News & Intelligence

Original reporting and market intelligence on advanced carbon materials.

Full intelligence on every material

For in-depth production methods, pricing dynamics, applications by sector, and verified company profiles, explore the ACC market reports covering each advanced carbon material.

View market reports

Materials

Filtered by topic:Research & InnovationClear ×
News17 August 2026

AMPP and Advanced Carbons Council Partner to Address Emerging Materials Performance Challenges

AMPP and the Advanced Carbons Council have signed a three-year MOU to collaborate on research, standards, education and technical knowledge around advanced carbon materials and materials protection. The partnership will initially focus on carbon-enhanced coatings, beginning with a September 10, 2026 webcast on graphene, CNTs and other advanced carbons in protective coatings.

Composites narrow thermal gap between CFRP and CMC
News16 July 2026

Composites narrow thermal gap between CFRP and CMC

CompositesWorld reports that new composite materials marketed as PyroKarb, PyroSic, and PyroXide are narrowing the thermal performance gap between carbon fiber-reinforced polymers (CFRPs) and ceramic matrix composites (CMCs). This development is significant for applications requiring high thermal resistance, enhancing the utility of CFRPs in industries like aerospace and automotive.

SWCNT pyroelectric phototransistors enhance IR detection
News15 July 2026

SWCNT pyroelectric phototransistors enhance IR detection

Researchers at the Skolkovo Institute of Science and Technology have developed a room-temperature infrared phototransistor using single-walled carbon nanotubes (SWCNTs) and lithium niobate (LiNbO3), achieving specific detectivities of up to 10^10 cm·Hz^1/2/W. This advancement in SWCNT-based pyroelectric phototransistors could lead to more affordable and portable IR sensing technologies, potentially transforming applications such as thermal imaging, environmental monitoring, and optical communications.

Perovskite solar cells to reduce solar power costs further
News15 July 2026

Perovskite solar cells to reduce solar power costs further

Researchers at Helmholtz-Zentrum Berlin have developed a new perovskite solar cell by incorporating graphene, enhancing its durability and efficiency. This advancement in perovskite technology could significantly reduce production costs and improve the performance of solar cells, potentially increasing the adoption of lightweight, flexible solar solutions over traditional silicon-based panels.

HydroGraph graphene paste aims for easier industrial blending
News15 July 2026

HydroGraph graphene paste aims for easier industrial blending

HydroGraph Clean Power has launched Fractal Graphene Paste, a pre-dispersed aqueous concentrate containing 20% graphene by weight, designed to simplify the incorporation of graphene into water-based industrial formulations. This development is significant for the advanced carbon materials sector as it addresses the dispersion challenges associated with graphene, potentially accelerating its adoption in applications such as construction materials, coatings, and thermal management systems.

Binding and spontaneous condensation of excitons in narrow-gap carbon nanotubes
News15 July 2026

Binding and spontaneous condensation of excitons in narrow-gap carbon nanotubes

Researchers at the University of Modena and Reggio Emilia have demonstrated that narrow-gap carbon nanotubes function as excitonic insulators, with exciton binding energy scaling inversely with tube radius. This finding is significant for the study of carbon nanotubes, as it reveals the potential for spontaneous exciton condensation, which could influence the electronic properties and applications of these materials in advanced carbon technologies.

Firefly to use carbon fiber composites for aeroshell in SkyFall Mars mission
News14 July 2026

Firefly to use carbon fiber composites for aeroshell in SkyFall Mars mission

Firefly Aerospace has secured a $13 million subcontract from NASA's Jet Propulsion Laboratory to produce and test the aeroshell for the SkyFall Mars mission, slated for a late 2028 launch. This project will utilize carbon fiber composites for the aeroshell's backshell and heatshield, highlighting the material's critical role in protecting spacecraft during the harsh entry, descent, and landing phases on Mars.

Research collaborations help Goodwill divert waste
News14 July 2026

Research collaborations help Goodwill divert waste

Researchers at Western University have partnered with Goodwill to reduce textile waste by using biochar and AI-powered sorting technologies. This collaboration is significant for the advanced carbon materials sector as it demonstrates a novel application of biochar in waste management, potentially increasing demand for biochar production.

Clean-water project at Hartley Nature Center shows success
News14 July 2026

Clean-water project at Hartley Nature Center shows success

St. Louis County, the city of Duluth, and other partners have implemented a green-infrastructure project at Hartley Nature Center to divert and filter stormwater runoff from 117 acres, using biochar among other materials to remediate contaminants. This initiative is significant for advanced carbon materials as it utilizes biochar, a form of carbon, to improve water quality by removing pollutants, benefiting ecosystems connected to Lake Superior.

News14 July 2026

Laser-induced graphene sensor enables dopamine detection in tears

Researchers from Brazil's Federal University of Pelotas and Federal University of Rio Grande do Sul have developed a laser-induced graphene sensor capable of detecting dopamine in tear fluid with high sensitivity. This advancement could lead to noninvasive monitoring of neurological disorders, utilizing the electroactive properties of graphene to provide a compact and scalable alternative to traditional methods that often require blood or implanted devices.

Berlin lab solves perovskite solar's stability problem with graphene-oxide fix
News14 July 2026

Berlin lab solves perovskite solar's stability problem with graphene-oxide fix

Researchers at the Helmholtz-Zentrum Berlin, along with collaborators, have developed a perovskite solar cell with a graphene-oxide interface that achieves 27.3% power conversion efficiency and maintains over 90% of this efficiency after 770 hours of operation. This advancement addresses the stability issues in all-perovskite triple-junction cells, potentially paving the way for more durable and efficient solar technologies using carbon-based materials like graphene.

Turning ginger waste into biobriquettes
News14 July 2026

Turning ginger waste into biobriquettes

Researchers at the National Research and Innovation Agency have developed biobriquettes from ginger rhizome waste, offering an alternative energy source. This innovation not only reduces environmental pollution from ginger waste but also supports the clean energy transition by utilizing biochar derived from lignocellulose-rich materials.

Singapore accepts first composite superstructure for Victory combat ship
News13 July 2026

Singapore accepts first composite superstructure for Victory combat ship

Swedish defense contractor Saab and Singapore's Penguin Shipyard International have delivered the first carbon-fiber composite superstructure for the Republic of Singapore Navy’s Victory-class Multi-Role Combat Vessel program. This integration of carbon-fiber materials into naval shipbuilding offers advantages such as reduced weight and radar cross-section, which are critical for modern combat vessel performance and efficiency.

What your tears could reveal about your brain
News13 July 2026

What your tears could reveal about your brain

Researchers used a laser to convert portions of a thin plastic film into electrically conductive graphene to create a sensor. This development could lead to new applications for graphene in biomedical devices, particularly in analyzing biological fluids like tears.

News13 July 2026

Premier Graphene advances military contract in Mexico, eyes graphene products

Premier Graphene and HGI Industrial Technologies have reached a new milestone by completing the first manufacturing payment for 1,600 protective military belts under a contract with Mexico's Secretaría de la Defensa Nacional. This development highlights the growing use of graphene in defense applications, showcasing its potential to enhance the durability and protective capabilities of military equipment.

Introducing LTDF-graphene and three target applications: critical minerals and more
News13 July 2026

Introducing LTDF-graphene and three target applications: critical minerals and more

Avadain has developed a new graphene type called Large, Thin, Defect-Free (LTDF) graphene, which features flakes in the 25-100+ µm² range and averages under 5 atomic layers, aiming to enhance applications in critical minerals, rare-earth-free magnets, and high-power electronics. This advancement is significant because it addresses key limitations of commercial graphene, such as flake size, layer count, and defect density, potentially improving the performance of carbon-based materials in demanding applications.

ArianeGroup secures long-term supply of CFRP payload fairings from Beyond Gravity
News13 July 2026

ArianeGroup secures long-term supply of CFRP payload fairings from Beyond Gravity

ArianeGroup has signed a contract with Beyond Gravity to supply 27 carbon fiber-reinforced polymer (CFRP) payload fairings for the Ariane 6 rocket, with deliveries starting at the end of 2026. This contract supports the increased production rate of Ariane 6 and highlights the critical role of CFRP materials in enhancing payload capacity and flexibility for the European heavy-launcher program.

HydroGraph adds Midland to graphene compounding network
News13 July 2026

HydroGraph adds Midland to graphene compounding network

HydroGraph has certified Midland Compounding & Consulting (MCC) as a U.S. compounding partner for graphene-enhanced polymer applications. This certification enables MCC to support the development and commercialization of advanced graphene-enhanced materials, focusing on performance improvements and functional enhancements in industrial applications.

Enhancing shape sensing of slender medical robots with carbon nanotubes
News10 July 2026

Enhancing shape sensing of slender medical robots with carbon nanotubes

Researchers at Zhejiang University have developed a piezoresistive fiber bandage using multi-walled carbon nanotubes for shape sensing in slender medical continuum robots. This innovation provides a low-cost, highly stretchable alternative to fiber-optic systems, potentially expanding the use of carbon nanotube-based sensors in medical robotics for improved intraoperative guidance.

News10 July 2026

Chinese scientists convert farm waste into high-value biochar in green tech breakthrough

Researchers at the Institute of Environment under the Hefei Comprehensive National Science Center have developed a technology for large-scale biochar production from agricultural and forestry biomass, capable of producing over 50,000 tonnes annually. This advancement in biochar technology supports environmental sustainability by transforming agricultural waste into a high-value carbon-rich material, with applications in soil enhancement, energy storage, and more.

Study tracks toxic chemical from tire pollution in Hillsborough River
News10 July 2026

Study tracks toxic chemical from tire pollution in Hillsborough River

Researchers at Florida International University have found that a water sample from the Hillsborough River near downtown Tampa contained 12 nanograms per liter of 6PPD-Q, a toxic chemical from tire wear, exceeding the EPA benchmark of 11 nanograms per liter. This study highlights the potential of using sargassum-based biochar to filter out harmful pollutants, which could protect Florida's aquatic ecosystems from the adverse effects of tire-derived chemicals.

New carbon nanotube sensors could shrink thermal cameras, medical devices
News10 July 2026

New carbon nanotube sensors could shrink thermal cameras, medical devices

Researchers from the Skolkovo Institute of Science and Technology have developed a new infrared sensor using single-walled carbon nanotubes, which shows a conductivity change 10,000 to 100,000 times more pronounced than graphene. This advancement could lead to more sensitive and compact thermal cameras and medical sensors, leveraging the unique properties of carbon nanotubes for enhanced infrared detection without the need for cooling.

PR1's carbon nanotube fiber tech receives peer-reviewed validation
News10 July 2026

PR1's carbon nanotube fiber tech receives peer-reviewed validation

Pure Resources (ASX: PR1) and Rice University have announced peer-reviewed validation of their carbon nanotube fibre (CNTF) technology, highlighting its high thermal conductivity and potential to outperform traditional materials like copper and aluminum. This development is significant for advanced carbon materials as it demonstrates the potential of CNTF to enhance thermal management in applications such as AI data centers, drones, and defense systems.

Biochar Nears Real-World Use in Cold Paving Trials
News10 July 2026

Biochar Nears Real-World Use in Cold Paving Trials

Verde Resources and Ergon Asphalt & Emulsions have signed a 10-year agreement to advance the use of engineered biochar in cold paving applications, moving their collaboration into a commercial phase. This development is significant for the advanced carbon materials sector as it tests biochar's practical performance in real-world infrastructure projects, potentially paving the way for wider adoption of carbon-storing materials in road maintenance and construction.

Biochar and smart water could make rice safer in polluted soils
News10 July 2026

Biochar and smart water could make rice safer in polluted soils

Researchers from the study published in Biochar have demonstrated that using iron and manganese modified biochar (FMBC) with specific irrigation strategies can significantly reduce cadmium and mercury levels in rice grown in co-contaminated paddy fields. This approach could enhance the safety of rice by stabilizing these metals and reducing their uptake, offering a viable solution for managing heavy metal contamination in agricultural soils.

Chinese team achieves major breakthrough in carbon nanotube CFET architecture
News10 July 2026

Chinese team achieves major breakthrough in carbon nanotube CFET architecture

Researchers at Peking University have developed the first all-carbon nanotube CFET digital logic circuits, achieving highly balanced electrical performance between p-type and n-type transistors. This advancement is significant for the future of carbon nanotube technology, as it introduces a new path for high-density computing architectures in artificial intelligence and edge computing applications.

FURHY publishes advances in bio-based, fully recyclable concrete technology
News10 July 2026

FURHY publishes advances in bio-based, fully recyclable concrete technology

The FURHY project, funded by the European Union's Horizon Europe program, has released three new key exploitable results, including a hybrid nonwoven material combining recycled carbon fiber and hemp fiber, as it enters its final six months. These developments are significant for the advanced carbon materials sector as they aim to create fully recyclable, bio-based composite materials with reduced carbon footprints, targeting applications in automotive and sports industries.

Himachal's first biochar project targets fires, carbon, and rural livelihoods
News10 July 2026

Himachal's first biochar project targets fires, carbon, and rural livelihoods

The Government of Himachal Pradesh, in collaboration with Dr Y.S. Parmar University of Horticulture and Forestry and ProClime Services Private Limited, has launched India's first indigenous biochar project in Hamirpur district, aiming to convert forest biomass into biochar to reduce fire risks and generate carbon credits. This initiative is significant for the advanced carbon materials sector as it transforms waste biomass into biochar, a stable carbon-rich material, thereby contributing to carbon sequestration and offering a sustainable model for forest management and rural livelihoods.

News10 July 2026

Artificial graphite vs natural graphite: differences and applications in lithium-ion batteries

The article discusses the differences between artificial graphite, made from carbon sources like petroleum coke, and natural graphite, focusing on their applications in the lithium-ion battery industry. Understanding these differences is crucial for battery manufacturers as they select materials that optimize performance, cost, and sustainability in battery production.

Barcelona tests olive-pit asphalt that stores CO2 for decades
News10 July 2026

Barcelona tests olive-pit asphalt that stores CO2 for decades

Barcelona City Hall, in collaboration with the BIT Habitat foundation and BIMSA, is trialling asphalt mixed with biochar from olive pits and pine biomass, starting in September with monitoring through 2027. This initiative aims to reduce CO2 emissions by up to 76% and store carbon in the road itself, potentially transforming road infrastructure into a long-term carbon sink using biochar.

News10 July 2026

Contemporary Amperex Technology and CarbonScape form strategic partnership

Contemporary Amperex Technology Co., Limited and CarbonScape have formed a strategic partnership to explore the use of biochar in improving soil health, with initial trials showing a 23% increase in topsoil organic carbon when combined with a 10% reduction in irrigation. This collaboration highlights the potential of biochar as a viable solution for enhancing soil carbon content, which is crucial for sustainable agriculture and carbon sequestration efforts.

Carbon nanotori provide quantum computers a third control channel without crosstalk
News10 July 2026

Carbon nanotori provide quantum computers a third control channel without crosstalk

Physicists at Martin Luther University Halle-Wittenberg have demonstrated that carbon nanotori, specifically C₁₂₀, C₁₄₄, and C₁₆₈, can generate and control toroidal dipole moments, offering a third control channel for quantum computers with zero crosstalk. This discovery is significant for quantum computing as it introduces a new method for qubit control that is orthogonal to existing electric and magnetic control methods, potentially reducing errors caused by crosstalk in superconducting quantum processors.

Kazakhstan and Hong Kong discuss eco-friendly aviation fuel project
News10 July 2026

Kazakhstan and Hong Kong discuss eco-friendly aviation fuel project

Kazakh Agriculture Minister Aidarbek Saparov met with representatives from Full Vision Capital, Towngas, and EcoCeres to discuss a project for producing sustainable aviation fuel from industrial oilseeds. This initiative could enhance the use of carbon materials like biochar by utilizing agricultural and food waste, contributing to environmentally friendly fuel alternatives.

International Virtual Institute and COMLURB convert urban waste into energy
News10 July 2026

International Virtual Institute and COMLURB convert urban waste into energy

The International Virtual Institute of Global Changes and COMLURB have converted approximately one ton of urban tree trimmings in Rio de Janeiro into 300 kilograms of biochar and pyrolytic oil using pyrolysis. This initiative transforms municipal green waste into valuable resources for soil improvement and energy research, highlighting a sustainable approach to waste management in the carbon materials sector.

COF-graphene hybrid opens new horizons for lithium-sulfur batteries
News9 July 2026

COF-graphene hybrid opens new horizons for lithium-sulfur batteries

Researchers at Tohoku University have developed a covalent organic framework (COF)-graphene interlayer that significantly reduces polysulfide shuttling in lithium-sulfur batteries, achieving a high reversible capacity of 1455.7 mA h g⁻¹ at 0.2 A g⁻¹. This advancement is crucial for the practical deployment of lithium-sulfur batteries, as it addresses the long-standing challenge of polysulfide migration, potentially leading to more efficient and durable energy storage solutions.

New graphene layer extends lithium-sulfur battery lifespan to 1,000 cycles
News9 July 2026

New graphene layer extends lithium-sulfur battery lifespan to 1,000 cycles

Researchers at Tohoku University have developed a graphene-based interlayer for lithium-sulfur batteries that maintains capacity over 1,000 charge-discharge cycles. This advancement addresses the polysulfide shuttle effect, enhancing the lifespan and efficiency of lithium-sulfur batteries, which are seen as a promising alternative to lithium-ion technology due to their higher energy storage potential.

Unexpected discovery leads to new graphene oxide production method
News9 July 2026

Unexpected discovery leads to new graphene oxide production method

Researchers at Texas A&M University have developed a new method to produce graphene oxide from methane using a plasma-based reactor, which simultaneously generates hydrogen as a byproduct. This scalable approach could reduce reliance on graphite for graphene oxide production, offering a cost-effective alternative for applications in batteries, electronics, and advanced manufacturing.

Graphene Holds Multiple Superconducting States Simultaneously
News9 July 2026

Graphene Holds Multiple Superconducting States Simultaneously

Researchers at MIT have discovered that rhombohedral graphene can host multiple superconducting states simultaneously, with some states becoming stronger under magnetic fields. This finding is significant for advanced carbon materials as it reveals new possibilities for manipulating graphene's superconducting properties, which could impact quantum computing and other technologies relying on superconductivity.

New 4D-printing method creates lighter, faster-spinning wind turbine blades
News6 July 2026

New 4D-printing method creates lighter, faster-spinning wind turbine blades

Researchers at Concordia University have developed a 4D-printing method to create curved blades for vertical-axis wind turbines from flat carbon-fibre composite panels, resulting in blades that weigh 80% less than commercial aluminum blades. This advancement could significantly reduce manufacturing costs and promote the use of lightweight carbon-fibre composites in renewable energy systems.

Czech Republic turns used coffee grounds into sustainable solutions
News6 July 2026

Czech Republic turns used coffee grounds into sustainable solutions

Coffee!Up in the Czech Republic is transforming used coffee grounds into products like natural soap, coffee oil, biomass, and biochar, as highlighted by the European Commission. This initiative is significant for the advanced carbon materials sector because it demonstrates the potential for waste coffee grounds to be converted into valuable materials such as biochar, which can improve soil health and contribute to carbon sequestration efforts.

Brazil converts urban tree trimmings into biochar and pyrolytic oil in pioneering project
News6 July 2026

Brazil converts urban tree trimmings into biochar and pyrolytic oil in pioneering project

Researchers at the International Virtual Institute of Global Changes, COPPE/UFRJ, in partnership with COMLURB, have converted one ton of urban pruning waste in Rio de Janeiro into approximately 300 kilos of biochar and pyrolytic oil. This initiative demonstrates the potential of using urban plant waste as a raw material for producing carbon-rich biochar, which can be used as a soil conditioner and for carbon storage, contributing to sustainable waste management and decarbonization efforts.

Sensor detects pesticides using material thinner than a strand of hair
News6 July 2026

Sensor detects pesticides using material thinner than a strand of hair

Researchers at the Vietnam Academy of Science and Technology have developed a sensor electrode using a composite material of graphene, carbon nanotubes (CNTs), and gold nanoparticles that can detect pesticide residues at concentrations as low as parts per billion (ppb). This advancement is significant for the field of advanced carbon materials as it enhances the sensitivity and functionality of sensors, contributing to improved agricultural product monitoring and food safety.

Uses of Fullerene C70 in OPV, Electronics, and Advanced Materials
News6 July 2026

Uses of Fullerene C70 in OPV, Electronics, and Advanced Materials

Researchers have identified several uses for Fullerene C70 in organic photovoltaics, organic electronics, and advanced nanomaterials, noting its unique elongated carbon cage structure and electron-accepting behavior. This matters because C70's distinct optical and electronic properties, compared to C60, make it a valuable material for studying and optimizing charge transport and light absorption in these advanced carbon-based applications.

Singapore builds its largest composite warship piece
News6 July 2026

Singapore builds its largest composite warship piece

Penguin Shipyard International has completed and delivered the largest composite superstructure ever built in Singapore for the Republic of Singapore Navy's new Multi Role Combat Vessel, with the first of six structures handed over to Saab on June 27, 2026. The use of carbon fiber composites in the superstructure reduces weight and radar cross-section, enhancing the ship's stability and stealth capabilities compared to conventional steel designs.

Bakkafrost Scotland showcases Applecross RAS facility during ministerial visit
News6 July 2026

Bakkafrost Scotland showcases Applecross RAS facility during ministerial visit

Bakkafrost Scotland showcased its Applecross recirculating aquaculture system (RAS) facility during a visit by Scotland’s marine minister, highlighting its strategy of rearing salmon longer in freshwater conditions. The facility plans to install pyrolysis technology to convert hatchery waste into biochar, aligning with efforts to reduce environmental impact and enhance sustainability in aquaculture.

New insights into graphene oxide's role in strengthening concrete
News3 July 2026

New insights into graphene oxide's role in strengthening concrete

Researchers at the University of California at Los Angeles have discovered how graphene oxide (GO) can enhance concrete strength, achieving a more than 20% increase in 28-day compressive strength with just 0.05 wt.% GO dosage. This insight into GO's mechanisms of hydration-seeding and pore-refinement could lead to more effective applications of GO in commercial concrete, optimizing its use for improved structural performance.

Integrals Power chosen as LMFP supplier for 9 million euro EU OLiMPUS battery project
News3 July 2026

Integrals Power chosen as LMFP supplier for 9 million euro EU OLiMPUS battery project

Integrals Power has been selected as the LMFP supplier for the EU-funded OLiMPUS battery project, which aims for mass production in Europe by 2032. This development is significant for the advanced carbon materials sector as it involves synthetic graphite anodes, which are crucial for reducing the carbon footprint and enhancing the sustainability of battery production.

Monolithic microLEDs eye AI
News2 July 2026

Monolithic microLEDs eye AI

Researchers at CEA-Leti and CRHEA/CNRS grew InGaN nanopyramids through a patterned graphene monolayer on SiC, achieving red, green, and blue emission from a single epitaxial growth with an indium content up to 45 percent in the quantum wells. The approach uses graphene as a selective-area growth mask to produce relaxed InGaN pseudo-substrates, addressing the long-standing efficiency drop in InGaN-based red emitters that has blocked monolithic full-colour microLED integration for AR displays.

Pyrum's second German plant progresses after initial delays
News2 July 2026

Pyrum's second German plant progresses after initial delays

Pyrum Innovations has announced that its tire recycling plant project in Perl-Besch, Germany is back on track following the successful optimisation of its Dillingen facility, which now produces stable recovered carbon black (rCB). This development is crucial for the advanced carbon materials sector as it demonstrates the viability of producing high-quality rCB, a key component for sustainable tire manufacturing and other applications.

Entropy facilitates charge separation in one-dimensional semiconductors
News2 July 2026

Entropy facilitates charge separation in one-dimensional semiconductors

Researchers at the Netherlands Lattice Research (NLR) have demonstrated that entropy can facilitate charge separation in single-walled carbon nanotubes (SWCNTs) by attaching a negatively charged dodecaborane structure. This finding could enhance the efficiency of carbon nanotube-based semiconductors, potentially impacting electronics and energy applications.

Portuguese graphene that hides planes and drones could transform defence
News2 July 2026

Portuguese graphene that hides planes and drones could transform defence

GTechPlasma, a spin-off from Instituto Superior Técnico in Lisbon, has developed a plasma-produced graphene powder that its researchers estimate could reduce an F-16's radar signature to that of a bird, and has already supplied 260 grams of the material to a Portuguese drone manufacturer. The development is notable for the graphene sector because it demonstrates a tunable, plasma-based production process capable of reaching 40 milligrams per minute, with industrialization underway through partner company Plasmaphene, targeting a market—radar-absorbent coatings—currently restricted to U.S. suppliers.

Sparc launches graphene additives for manufacturing-focused ESD coatings
News2 July 2026

Sparc launches graphene additives for manufacturing-focused ESD coatings

Sparc Technologies launched SparcES™, a graphene additive range for ESD and conductive coatings targeting data centres, semiconductor facilities and EV battery plants, following 24 months of internal conductivity testing. The range positions graphene as a potential lower-dosage alternative to carbon black, graphite, carbon nanotubes and metal nanowires in a global ESD and conductive coatings market estimated at US$1.2 billion in 2026.

Cannot Rewrite Title Without Full Original
News2 July 2026

Cannot Rewrite Title Without Full Original

South Korea's Ministry of Science and ICT rated four of its 14 Small-scale R&D Zones—Seoul Hongneung, Pohang, Incheon Seo-gu, and Jinju—as "Excellent" in the 2025 annual evaluation, with Pohang's zone directing roughly 11 billion won toward Graphene Square and POSTECH to build the world's first mass-production plant for graphene film. The Pohang result signals growing state-backed infrastructure for scaling graphene manufacturing, a persistent bottleneck for the advanced carbon materials sector.

Top Recovered Carbon Black Refining Plant Opportunities for 2026?
News1 July 2026

Top Recovered Carbon Black Refining Plant Opportunities for 2026?

The recovered carbon black (rCB) market, produced by pyrolyzing end-of-life tires, is projected to grow at a 6.4% CAGR from 2023 to 2028, with each ton of rCB saving up to 1.7 tons of CO2 compared to virgin carbon black. Inconsistent output quality and complex regulatory requirements remain the primary barriers limiting broader adoption of rCB as a substitute feedstock in tire, rubber, and carbon materials manufacturing.

DENSO North America Foundation Awards Nearly $200,000 to Expand Hands ...
News1 July 2026

DENSO North America Foundation Awards Nearly $200,000 to Expand Hands ...

Cal Poly Pomona's College of Engineering received a $198,100 grant from the DENSO North America Foundation to fund advanced manufacturing equipment, including a large-scale carbon fiber 3D printer and an industrial multi-material printer, for student use. The addition of industrial-grade carbon fiber 3D printing at the undergraduate level expands hands-on access to composite fabrication technology that is otherwise largely confined to professional industry settings.

Experimental Evaluation of Biochar and TiO₂ Synergy Optimization in Concrete
News1 July 2026

Experimental Evaluation of Biochar and TiO₂ Synergy Optimization in Concrete

Researchers tested M30 grade concrete mixes replacing partial cement with biochar and anatase-phase TiO₂ nanoparticles, finding that a 1% BC + 0.5% TiO₂ mix achieved 41.19 MPa compressive strength at 7 days but exhibited strength regression by 28 days due to thermal eigenstress and micro-cracking at biochar–paste interfaces. The findings highlight a durability limitation for biochar-based concrete composites, indicating that nano-TiO₂ accelerates early hydration at the cost of long-term mechanical performance.

Graphene quantum dot gold nanocomposite for drug-free antibacterial wound treatment
News1 July 2026

Graphene quantum dot gold nanocomposite for drug-free antibacterial wound treatment

Researchers at Gannan Medical University and Shanghai University developed a gold nanoparticle–graphene oxide quantum dot (AuNPs/GOQDs) Schottky junction nanocomposite that achieved over 97% bacterial eradication in vitro and approximately 99% wound closure in mice within 9 days under 460 nm LED irradiation. The work advances graphene quantum dot applications by demonstrating that pairing GOQDs with AuNPs suppresses charge recombination to boost reactive oxygen species output while simultaneously enhancing photothermal conversion, offering a drug-free pathway to address multidrug-resistant infections.

Graphene can host multiple superconducting states, a new study finds
News1 July 2026

Graphene can host multiple superconducting states, a new study finds

MIT researchers published a study in Nature finding that rhombohedral graphene, a naturally occurring stacked structure within ordinary graphite, hosts at least four distinct superconducting states, three of which persist under magnetic fields up to 9 tesla and one of which strengthens under a perpendicular magnetic field. The findings expand understanding of graphene's electronic behavior, reinforcing its relevance as a platform for discovering unconventional quantum phenomena in carbon-based materials.

OCSiAl named supplier of carbon nanotubes for PowerCo's Unified Cell batteries
News1 July 2026

OCSiAl named supplier of carbon nanotubes for PowerCo's Unified Cell batteries

OCSiAl has been named a single-wall carbon nanotube supplier to Volkswagen Group's battery subsidiary PowerCo for its Unified Cell platform, with supply coming from OCSiAl's audited production facility in Serbia. The deal extends single-wall carbon nanotube use into a major European automaker's standardized battery platform, where the material serves as a conductive additive in graphite anodes to improve conductivity, heat dissipation, and fast-charging performance.

HydroGraph Clean Power Launches Fractal Graphene Paste
News1 July 2026

HydroGraph Clean Power Launches Fractal Graphene Paste

HydroGraph Clean Power Inc. commercially launched Fractal Graphene Paste, a 20% graphene-by-weight aqueous dispersion with a 99.8% carbon purity and over two-year shelf life, and has supplied samples to more than 30 customers. The product targets the graphene sector's core adoption barrier—dispersion difficulty—by delivering a stable, ready-to-use concentrate compatible with standard mixing equipment, which could accelerate graphene uptake in composites, coatings, and construction materials.

News1 July 2026

Advancing the shielding effectiveness through a graphene-perturbed slab

Researchers applied the Small Perturbation Method to analytically and numerically model how Gaussian surface roughness affects bistatic scattering coefficients, transmission coefficients, and shielding effectiveness for copper and graphene slabs across radio-frequency to near-infrared ranges. The findings provide design guidelines for tuning graphene-based shielding and optical devices by adjusting chemical potential, temperature, and layer count alongside surface roughness parameters.

Paragraf forms Advisory Committee and adds to board of directors
News1 July 2026

Paragraf forms Advisory Committee and adds to board of directors

Paragraf, a graphene electronics foundry based in Cambridgeshire, UK, has formed a new Advisory Committee comprising Oreste Donzella, Jean-Michel Richard, and Thomas Piliszczuk, with Donzella and Richard also joining the board as non-executive directors. The appointments signal Paragraf's push to scale graphene semiconductor manufacturing and expand into global electronics markets, drawing on advisors with deep experience at firms including Texas Instruments, Micron, KLA, and imec.

Effect of modifying concrete with multi-walled carbon nanotubes on stress-strain behavior
News1 July 2026

Effect of modifying concrete with multi-walled carbon nanotubes on stress-strain behavior

Researchers at Kyiv Aviation Institute published a review of 2021–2026 experimental studies on multi-walled carbon nanotubes (MWCNTs) in reinforced concrete, finding that dosages of 0.05–0.15% by weight of binder increase crack initiation moment by 20–42% and reinforcement bond strength by 16–35%. The findings support broader use of carbon nanotubes as a concrete additive, with identified synergistic effects when combined with fiber reinforcement or micro-fillers offering a pathway to more ductile structural composites.

They turn olive and pine waste into biochar for asphalt that helps capture carbon
News1 July 2026

They turn olive and pine waste into biochar for asphalt that helps capture carbon

AMSA, ELSAN, and the Universitat Politècnica de Catalunya developed an asphalt mixture incorporating biochar derived from olive pits and pine residues via pyrolysis, with lab tests showing up to 75% emissions reduction in the treated pavement layer. The development expands biochar applications into road construction, positioning agricultural and forestry waste as a carbon-sequestering input for infrastructure materials.

Graphene thin films for neural interfaces
News1 July 2026

Graphene thin films for neural interfaces

Researchers at ICN2, led by Jose A. Garrido, are developing graphene-based thin film devices for neural stimulation and recording, with work spanning device fabrication, in vivo testing in rodent and large-animal models, and clinical translation efforts. The work demonstrates a pathway for graphene to move from laboratory research into regulated medical devices, advancing the material's role in bioelectronics beyond conventional carbon fiber or composite applications.

INBRAIN Neuroelectronics Ends Enrollment in Study of Graphene Neural Interfaces
News1 July 2026

INBRAIN Neuroelectronics Ends Enrollment in Study of Graphene Neural Interfaces

INBRAIN Neuroelectronics completed enrollment of ten patients (eight treated) in a first-in-human trial of its graphene cortical interface, conducted during brain tumor resection surgeries at Northern Care Alliance NHS Foundation Trust, with no device-related adverse events or perioperative failures observed. The results support graphene as a viable electrode material for neural interfaces, with implications for the graphene sector as the technology advances toward clinical commercialization in brain-computer interface applications.

ECS Composites Drives Next Generation Carbon Fiber for Modern Military Demands
News1 July 2026

ECS Composites Drives Next Generation Carbon Fiber for Modern Military Demands

ECS Composites, headquartered in Grants Pass, Oregon, announced advances in its carbon fiber composite enclosures for military applications, claiming weight and thickness reductions of up to 50% compared to traditional fiberglass designs. The development reflects demand for lighter carbon fiber composites in defense protective systems, where weight reduction without loss of structural integrity is a key performance requirement.

Anomalous Duffing response in suspended CNT quantum dot at ultrastrong coupling
News1 July 2026

Anomalous Duffing response in suspended CNT quantum dot at ultrastrong coupling

Researchers measured the Duffing nonlinear mechanical response of a suspended single-wall carbon nanotube quantum dot at 13 mK, extracting an electromechanical coupling ratio g/ωm of 4.0 and observing an anomalous stiffening-spring Duffing parameter near single-electron tunneling regions where softening was theoretically expected. The unexplained sign discrepancy in the nonlinear spring behavior challenges existing models of electron-vibron coupling in carbon nanotube resonators and has implications for the design of CNT-based nanoelectromechanical sensors and qubits operating in the ultrastrong coupling regime.

MXene-Based Catalysts for Sustainability and Chemical Challenges
News1 July 2026

MXene-Based Catalysts for Sustainability and Chemical Challenges

The MXeneCatSus COST Action is a European research network established to engineer MXene-based catalysts—two-dimensional materials made from Earth-abundant elements—for hydrogen generation, CO2 conversion, and nitrogen fixation. The initiative is relevant to advanced carbon materials research as MXenes share structural and functional characteristics with other 2D carbon materials and are being developed as alternatives or complements to graphene in catalytic applications.

Thirteenth Nano Research Award goes to Xiangfeng Duan and Akira Fujishima
News1 July 2026

Thirteenth Nano Research Award goes to Xiangfeng Duan and Akira Fujishima

Tsinghua University Press awarded the 13th annual Nano Research Award to UCLA professor Xiangfeng Duan, recognized for his work on 2D materials, van der Waals heterostructures, and porous graphene architectures, and to Akira Fujishima of the University of Shanghai for Science and Technology, recognized for discovering the Honda–Fujishima Effect and pioneering TiO₂ photocatalysis. Duan's advances in graphene-based energy storage and 2D material synthesis are directly relevant to the carbon materials sector, while Fujishima's photocatalytic coatings have established commercial applications in surface decontamination and industrial wastewater treatment.

Carbon Nanotube Film/Fiber-Based Hybrids by Professor Chang Liu
News1 July 2026

Carbon Nanotube Film/Fiber-Based Hybrids by Professor Chang Liu

Professor Chang Liu of the Institute of Metal Research, Chinese Academy of Sciences presented research at an NTU MSE seminar on SWCNT-based hybrid materials, including a SWCNT/Cu core-shell fiber with a specific electrical conductivity of 1.15×10⁴ S m² kg⁻¹ and FeCl3-filled CNT fibers reaching 1.35×10⁷ S m⁻¹ conductivity and 2.54 GPa tensile strength. The work advances CNT fiber and film applications in electrical conductors, thermoelectric devices, and electrocatalysis by addressing the longstanding dispersion challenge that has limited SWCNT composite development.

£1.9m fellowship to scale next-generation 2D materials technologies
News30 June 2026

£1.9m fellowship to scale next-generation 2D materials technologies

Professor Roman Gorbachev at the University of Manchester received a £1.9 million EPSRC Open Fellowship to lead a five-year project scaling van der Waals 2D material heterostructures from micrometre samples to wafer-scale fabrication using a new ultra-high vacuum platform. The work directly advances graphene and 2D materials manufacturing by targeting industrial-process compatibility and establishing a UK fabrication hub accessible to academic and industry users.

US study evaluates occupational health risks of graphene nanomaterials
News30 June 2026

US study evaluates occupational health risks of graphene nanomaterials

US NIOSH researchers measured occupational exposures to graphene family nanomaterials (GFN) across 11 manufacturing facilities, finding that 38% of respirable samples and 53% of inhalable samples exceeded the suggested occupational exposure band of <10 µg/m³. The findings indicate that graphene producers and downstream processors face uncontrolled worker exposure risks, with primary manufacturers showing higher inhalable concentrations due to handling dry powdered materials.

News30 June 2026

From Scrap to Spar Where Recycled Carbon Fiber Actually Stands in Aircraft Structures

Boeing and Mitsubishi Chemical Advanced Materials are testing prototype cabin sidewall panels made from pyrolysis-derived recycled carbon fiber under Mitsubishi's KyronTEX material line, while separate simulation research found a scaled-down wing spar built from recycled carbon fiber performed within acceptable stress margins compared to a virgin-fiber equivalent. Recycled carbon fiber remains limited to non-structural or secondary aerospace applications due to unresolved fiber length, alignment, and surface sizing deficiencies, with primary structural qualification requiring years of additional testing and supply chain development.

University of Aveiro Researchers Develop Water Purifier from Industrial Waste
News30 June 2026

University of Aveiro Researchers Develop Water Purifier from Industrial Waste

Researchers at the University of Aveiro developed 3D-printed filters from bauxite refining waste (red mud) that removed over 90% of the antibiotic ciprofloxacin within one hour under UV light. The work demonstrates a functional application for carbon nanotubes in photocatalytic water treatment using industrial byproducts, with the material retaining performance across multiple decontamination cycles.

Micro-X outlines nanotube CT vision and reinforces investor disclosure limits
News30 June 2026

Micro-X outlines nanotube CT vision and reinforces investor disclosure limits

Micro-X Limited (ASX: MX1) released an investor presentation outlining its strategy to apply proprietary carbon nanotube X-ray technology to CT imaging, while noting the material is not a prospectus and that its securities are not registered in the United States. The update signals continued commercial development of carbon nanotube-based X-ray sources for medical imaging, a niche application that could influence demand and performance benchmarks for nanotube components in the medtech sector.

Nanomaterials Could Help Italy Close Its Renewable Energy Storage Gap
News30 June 2026

Nanomaterials Could Help Italy Close Its Renewable Energy Storage Gap

Graphene-based energy storage systems have been reported to reach energy densities up to 650 Wh/kg, compared to 150–250 Wh/kg for conventional lithium-ion batteries, according to a report focused on Italy's renewable energy storage needs. This performance gap highlights graphene's potential role in grid-scale storage applications, a key growth area for the advanced carbon materials sector.

EPFL Studies Water Behavior At A Few-Nanometer Scale
News30 June 2026

EPFL Studies Water Behavior At A Few-Nanometer Scale

EPFL researchers, led by Nikita Kavokine at the Quantum Plumbing Lab, are studying water confined to nanometer-scale channels and found that electromagnetic coupling between water molecules and channel wall electrons creates a friction mechanism not predicted by classical hydrodynamics. For the carbon nanotubes sector, this work helps explain the anomalously fast water flow observed through carbon nanotubes and points toward nanotube-based systems capable of converting hydraulic energy or improving filtration efficiency.

KB-Element to Showcase Graphene for High-Strength Plastics at Nano Korea 2026
News30 June 2026

KB-Element to Showcase Graphene for High-Strength Plastics at Nano Korea 2026

KB-Element will exhibit its non-oxidized graphene products, including graphene masterbatch pellets, at Nano Korea 2026 in Goyang, South Korea, from July 8 to 10. The company's plasma-based exfoliation process cuts production costs to roughly one-tenth of conventional methods, and its masterbatch format addresses graphene's longstanding dispersion challenges in polymer composites.

Research Unveils True Drivers of Nanoscale Water Chemistry
News30 June 2026

Research Unveils True Drivers of Nanoscale Water Chemistry

Researchers from Cambridge, Harvard, Caltech, and the Max-Planck Institute for Polymer Research published findings in Science Advances showing that nanoconfined water's apparent chemical reactivity is driven by pressure and surface chemistry rather than confinement itself, with hydroxide ions bonding to hexagonal boron nitride walls but not to inert graphene. The work offers a design principle for tailoring water reactivity by selecting confining materials and controlling internal pressures, with direct relevance to graphene-based membranes, carbon electrodes in batteries and fuel cells, and the broader development of two-dimensional carbon and carbon-adjacent materials for electrochemical applications.

Gyeongsangbuk-do Province to establish foundation for industrial innovation
News30 June 2026

Gyeongsangbuk-do Province to establish foundation for industrial innovation

Gyeongsangbuk-do Province secured 30 billion won in South Korean state funds across three projects targeting graphene 2D nanomaterials, ultra-precise electronic glass, and on-device AI for manufacturing, running from 2026 to 2030. The graphene project, organized by POSTECH Nano Convergence Technology Institute with 14.3 billion won, aims to build Korea's first end-to-end infrastructure covering graphene synthesis through to commercialization, addressing the country's longstanding gap between R&D capability and industrial-scale production.

PowerCo selects OCSiAl nanotubes for battery additives
News30 June 2026

PowerCo selects OCSiAl nanotubes for battery additives

PowerCo, Volkswagen Group's battery subsidiary, selected OCSiAl to supply TUBALL single-wall carbon nanotube additives for the graphite anodes of its Unified Cell platform, manufactured at OCSiAl's Serbia facility. The deal expands the role of single-wall carbon nanotubes in large-scale EV battery production, with OCSiAl now supplying the majority of European EV battery manufacturers and planning a $300 million graphene nanotube facility in Luxembourg.

Argo Graphene Solutions Corp. Announces Closing of License and Technology Transfer
News30 June 2026

Argo Graphene Solutions Corp. Announces Closing of License and Technology Transfer

Argo Graphene Solutions Corp. (CSE: ARGO) closed a license agreement with Grapherry, Inc. on June 25, 2026, acquiring an exclusive worldwide license to Grapherry's STREAM graphene production platform in exchange for up to 11,000,000 common shares and 5,500,000 warrants, with full technology ownership transferring to Argo upon full share issuance. The deal gives Argo control over a scalable graphene production technology targeting construction, agriculture, and energy storage applications, while Grapherry's CEO Vikas Berry joined Argo's board and the company's existing CEO Scott Smale resigned.

IIT Kanpur Maps Beating Nodes To Graphene's ...
News30 June 2026

IIT Kanpur Maps Beating Nodes To Graphene's ...

Researchers at IIT Kanpur and the Indian Institute of Science Bangalore derived scaling relations from Onsager's quantization relation to distinguish the origins of quantum oscillation beating in graphene, showing that a pseudomagnetic field yields Nc,j ∝ (2j+1)Bc,j² while energy splitting yields Nc,j ∝ (2j+1)²Bc,j². The framework gives experimentalists a quantitative tool to identify strain-induced pseudomagnetic fields versus valley- or spin-dependent band splittings in graphene-based systems, directly informing the characterization of graphene materials and devices.

Exploring long-range magnetism with graphene
News30 June 2026

Exploring long-range magnetism with graphene

Researchers at INL and Universidad Autónoma de Madrid used a scanning tunnelling microscope to place individual hydrogen atoms on graphene, observing spin interactions across distances exceeding 10 nanometres, with findings published in Nature Communications. The work establishes graphene as a platform for atomic-scale magnetic control, which has potential implications for quantum computing applications that rely on engineered carbon-based materials.

Graphene plasmon cavities enable advanced, scalable terahertz photodetectors
News30 June 2026

Graphene plasmon cavities enable advanced, scalable terahertz photodetectors

Researchers at ICFO and partner institutions built a monolayer graphene terahertz photodetector using acoustic graphene plasmon cavities grown via chemical vapor deposition, achieving a 30% higher photoresponse than conventional devices without hexagonal boron nitride encapsulation, published in ACS Photonics in 2026. The result shows that CVD-grown graphene can deliver competitive THz detection performance without the fabrication complexity of hBN encapsulation, lowering a barrier to large-scale graphene device manufacturing.

Swedish scientists want to explore Mars with caterpillar-like robots
News30 June 2026

Swedish scientists want to explore Mars with caterpillar-like robots

Researchers at the University of Gothenburg developed a 3 cm soft robot made of polymer artificial muscles that moves like a caterpillar, reinforced with carbon nanotubes to improve durability and radiation resistance. The use of carbon nanotubes in flexible robotic actuators demonstrates a functional application for the material in extreme-environment electronics protection beyond traditional structural composites.

Shining blue light on gold-graphene nanodots achieves wound healing trifecta
News30 June 2026

Shining blue light on gold-graphene nanodots achieves wound healing trifecta

Chinese researchers combined gold nanoparticles with graphene oxide quantum dots to form a Schottky junction nanocomposite that, when activated by blue LED light, achieved 97% bacterial eradication and nearly 99% wound closure in mice within nine days. The work demonstrates a functional wound-treatment application for graphene oxide quantum dots, advancing their use beyond structural roles into photodynamic and photothermal biomedical therapies.

Graphene in Canada, from elegant materials science to investable industrial reality
News30 June 2026

Graphene in Canada, from elegant materials science to investable industrial reality

Canada's graphene sector has developed across production, construction, filtration, printed electronics, and energy storage, with companies such as NanoXplore operating a 4,000-metric-ton-per-year facility in Montréal and firms like Zentek and Graphene Leaders Canada advancing application-specific products toward commercial deployment. The ecosystem signals a shift from materials science demonstration toward repeatable industrial use cases in carbon-based composites, conductive additives, and separation technologies, though commercial viability still depends on product qualification, standardization, and cost competitiveness against incumbent materials.

Industrial Water Treatment with Graphene and Antifouling
News30 June 2026

Industrial Water Treatment with Graphene and Antifouling

Researchers and engineers are evaluating graphene oxide and reduced graphene oxide as adsorbents, antifouling coatings, catalytic supports, and modified membrane layers within industrial water treatment systems targeting COD removal, biofouling control, and reverse osmosis feed protection. The graphene sector faces a clear scaling challenge, as industrial adoption of these carbon nanomaterials depends on demonstrating mechanical stability, resistance to chemical cleaning cycles, controlled delamination, and validated cost-per-cubic-meter performance in pilot tests using real effluent matrices.

Plasma, Graphene Unite to Shield Metals from Corrosion
News30 June 2026

Plasma, Graphene Unite to Shield Metals from Corrosion

Researchers at the University of Córdoba's Plasma Innovation Laboratory developed two methods for depositing graphene onto metal surfaces using microwave plasmas at atmospheric pressure, but found that neither achieved sufficient adhesion between the graphene layer and the metal. The work advances graphene's potential as a corrosion-resistant coating for industrial applications such as fuel cell electrodes, while identifying adhesion as the key technical barrier to overcome.

News30 June 2026

Materials Verification Measurement Standards and Maturation of Advanced Carbon Technologies

Terrance Barkan of the Advanced Carbons Council and Dr. Andrew Pollard of the UK's National Physical Laboratory discussed how measurement science, standardization, and materials verification underpin the commercialization of graphene and other advanced carbon materials. For the sector, the conversation highlights that without validated characterization methods and traceable measurement standards, reproducible manufacturing and scalable deployment of carbon nanomaterials — including graphene, carbon nanotubes, and emerging MXenes — remain unachievable.

News30 June 2026

Nanodiamonds By Molecular Design

A team led by Yingke Wu and Tanja Weil at the Max Planck Institute for Polymer Research synthesized 3–4 nm nanodiamonds from nanographene building blocks under high pressure and temperature, publishing the results in Nature. The bottom-up method gives precise control over nanodiamond size and allows silicon- and germanium-based optical emitters to be incorporated during synthesis without post-processing, which is relevant for carbon-based quantum and photonic material development.

China Just Upgraded Vantablack So It Can Actually Be Used On Cars
News30 June 2026

China Just Upgraded Vantablack So It Can Actually Be Used On Cars

Chinese researchers developed an ultra-black automotive coating combining nanoscale carbon black and carbon nanotubes that absorbs over 99.90% of light, withstands high humidity, and survived 10-day water submersion without visible degradation. The coating demonstrates a scalable production method for carbon nanotube-based finishes with improved adhesion, though long-term scratch, abrasion, and UV durability remain untested.

Fullerene Synthesis Technology, Characterization & Properties
News30 June 2026

Fullerene Synthesis Technology, Characterization & Properties

Fullerene C60, a cage-like carbon nanomaterial discovered in 1985, is under active research for applications in organic electronics, photovoltaics, lubricants, coatings, biomedical systems, and perovskite/silicon tandem solar cells. Within the advanced carbon materials sector, C60 occupies a distinct niche from fiber- or graphene-based materials, with its electron-accepting properties and molecular tunability driving continued interest in energy and specialty coating applications.

New hollow nanotube structure designed to convert waste heat into electricity
News30 June 2026

New hollow nanotube structure designed to convert waste heat into electricity

Researchers at POSTECH in South Korea engineered hollow silicon nanotube structures that reduced thermal conductivity by 70% compared to solid silicon nanowires by trapping phonons at near-room temperature. The approach uses abundant silicon compatible with existing semiconductor manufacturing, offering a potential alternative to rare-material-dependent thermoelectric devices for waste heat recovery in data centers, EV batteries, and industrial facilities.

News30 June 2026

Canatu changes its leadership structure to drive efficiency and growth

Canatu Plc restructured its leadership team on June 25, 2026, consolidating reporting lines directly to CEO Maximilian Slawinski and renaming its Automotive business unit to Robotics, Mobility and Defence. The reorganization signals Canatu's broadened market focus for its carbon nanotube products beyond automotive into robotics and defence applications.

Temperature tunes plastic waste upcycling
News30 June 2026

Temperature tunes plastic waste upcycling

Researchers at Shihezi University used phosphoric acid-activated walnut shell biochar to catalytically pyrolyze waste agricultural plastic mulch film at three temperatures (300, 350, 400 °C), finding that 350 °C maximized olefin selectivity at 69% while 400 °C reduced tar deposition and produced carbon deposits with lower activation energy for easier regeneration. The findings give biochar catalyst developers a temperature-based framework for balancing product selectivity against catalyst deactivation and regenerability in agricultural plastic pyrolysis systems.

Why Anisotropic Graphene Is a Game Changer for Thermal Conductive Materials
News30 June 2026

Why Anisotropic Graphene Is a Game Changer for Thermal Conductive Materials

Graphene's single-atom-thick sheet structure forms strong in-plane covalent bonds that enable rapid heat conduction along its surface while limiting conductivity in the perpendicular direction, producing highly anisotropic thermal behavior. This directional heat management capability makes graphene-based thermal materials relevant for electronics cooling and composite applications where controlling heat flow pathways is a design requirement.

Plastic bottles turned into electric vehicle battery material
News30 June 2026

Plastic bottles turned into electric vehicle battery material

Penn State researchers converted waste PET plastic bottles into synthetic graphite by blending shredded PET with 2.5% graphene oxide by weight and applying heat treatment, producing crystallite dimensions that exceeded those of natural graphite without metal catalysts. The metal-free process reduces post-processing steps needed to achieve battery-grade purity and could supply graphitic carbon for lithium-ion anodes and hard carbon for sodium-ion batteries from a single plastic waste feedstock.

New robot without rigid parts moves like an inchworm
News30 June 2026

New robot without rigid parts moves like an inchworm

Hari Prakash Thanabalan at the University of Gothenburg built an inchworm-inspired soft robot using alternating polymer-carbon electrode layers that expand roughly 10% under low voltage, with no rigid parts, and ran it for four hours daily over four months without performance loss. The use of carbon nanotubes as a protective sheath—allowing the robot to continue functioning after needle punctures—demonstrates a practical structural application of CNTs in soft robotics actuators designed for harsh or remote environments.

UJ researchers design efficient solar material for water treatment
News30 June 2026

UJ researchers design efficient solar material for water treatment

Researchers at the University of Johannesburg fabricated a three-layer nanocomposite photocatalyst (Ti1.33N@BiVO4/GdIn2Se3) incorporating a custom-synthesized MXene, achieving 20× greater electrical conductivity and charge-carrier lifetimes up to 59.5 seconds compared to single-component baselines. The MXene engineering approach demonstrates a pathway for improving charge-carrier retention in 2D carbon-adjacent materials, with direct relevance to MXene-based composite development for energy and environmental applications.

New research reveals what really controls water chemistry in nanoscale spaces
News30 June 2026

New research reveals what really controls water chemistry in nanoscale spaces

Researchers from Cambridge, Harvard, Caltech, and the Max-Planck Institute for Polymer Research used machine-learning simulations to study water confined between graphene and hexagonal boron nitride sheets, finding that confinement alone does not alter water's reactivity but that pressure and surface chemistry of the confining material are the controlling factors. For the carbon materials sector, the study establishes that graphene's chemically inert surface does not enhance water dissociation, while reactive surfaces like hBN do, offering a design principle for selecting 2D carbon and non-carbon materials in membranes, fuel cells, and electrochemical systems.

Box-Behnken Optimized One-Step CO-Synthesis of Poly(pyrocatechol violet)-Reduced Graphene
News30 June 2026

Box-Behnken Optimized One-Step CO-Synthesis of Poly(pyrocatechol violet)-Reduced Graphene

Researchers at Vietnamese universities fabricated a glassy carbon electrode modified with poly(pyrocatechol violet) and electrochemically reduced graphene oxide using one-step cyclic voltammetry, achieving a metronidazole detection limit of 0.013 µM. The work demonstrates a route to functionalized reduced graphene oxide composites that avoids toxic chemical reductants, relevant to the development of graphene-based electrochemical sensing materials.

Max Planck researchers produce nanodiamonds from graphene
News30 June 2026

Max Planck researchers produce nanodiamonds from graphene

Researchers at the Max Planck Institute for Polymer Research, led by Yingke Wu and Tanja Weil, synthesized nanodiamonds of 3–4 nanometers from graphene fragments using high pressure and high temperature, publishing the results in Nature. The bottom-up method allows precise control over nanodiamond size, structure, and dopant atoms—such as nitrogen for vacancy centers or silicon for photoluminescence—which is relevant for graphene-derived carbon nanomaterials and quantum photonics applications.

What really controls water chemistry in nanoscale spaces
News30 June 2026

What really controls water chemistry in nanoscale spaces

Researchers from Cambridge, Harvard, Caltech, and the Max Planck Institute for Polymer Research published findings in Science Advances showing that nanoconfined water's apparent chemical reactivity is driven by pressure and surface chemistry rather than confinement itself, using machine-learning simulations of water trapped between graphene and hexagonal boron nitride sheets. The work establishes that graphene's chemically inert surface leaves water reactivity unchanged, while reactive surfaces like hBN can actively enhance water dissociation—a design principle relevant to graphene and 2D carbon material applications in membranes, fuel cells, and electrochemical systems.

Copper-Infused Biochar Achieves Over Ninety-Nine Percent Pollutant Removal
News29 June 2026

Copper-Infused Biochar Achieves Over Ninety-Nine Percent Pollutant Removal

Chohee Yang and colleagues published a study in npj Clean Water showing that copper-incorporated biochar synthesized under a CO₂ atmosphere removes 90.8% of bisphenol A via adsorption and achieves over 99% total degradation with peroxydisulfate, while the production process yields syngas comprising 94% of total gas output. The findings are relevant to the biochar sector as they demonstrate a pathway to engineer biochar with both high-performance catalytic water treatment capability and improved thermochemical energy recovery in a single production process.

Accelerating Climate Action through Megaton and Gigaton Scale Carbon Storage
News29 June 2026

Accelerating Climate Action through Megaton and Gigaton Scale Carbon Storage

Yilmaz et al. tested pyrolysis conditions across 45 experiments using five agricultural waste streams—wheat straw, tomato waste, carnation stalks, banana residues, and vineyard prunings—finding that higher temperatures reduce yield but increase stable fixed carbon content, with feedstock type and peak temperature being the dominant variables. For the biochar sector, the results provide feedstock-specific processing parameters that directly inform production decisions where carbon stability and mineral retention are quality targets.

Water in biomass aids biochar production, study finds
News29 June 2026

Water in biomass aids biochar production, study finds

A study published in *Biochar* found that free and bound water in plant biomass reduce pyrolysis reaction intensity and increase biochar yield, with bound water lowering activation energy for hemicellulose decomposition while raising it for cellulose, and a 30% moisture content identified as a practical operating point. The findings give biochar producers a molecular-level basis for managing feedstock moisture to improve yield and char stability rather than treating water solely as a processing inefficiency.

This everyday waste could soon be used to build your future home
News29 June 2026

This everyday waste could soon be used to build your future home

Researchers at RMIT University published a study in the Journal of Cleaner Production showing that spent coffee grounds processed via pyrolysis into biochar can increase concrete strength by up to 30%. The finding is relevant to the biochar sector as it demonstrates a scalable pathway for converting organic waste into a functional carbon-based construction material, potentially reducing landfill volumes and demand for natural sand.

New Prescription Targets Environmental Crisis
News29 June 2026

New Prescription Targets Environmental Crisis

Researchers from the University of Exeter and Lund University published a Sustainability Hierarchy Framework that ranks environmental interventions by priority, placing reduction of extraction and consumption above downstream measures like recycling and offsets. The framework has no direct implication for the advanced carbon materials sector, but its push to redirect funding away from downstream cleanup toward upstream production limits is notable for industries reliant on fossil fuel-derived feedstocks such as carbon fiber precursors and synthetic graphite.

Microwave Biochar Transforms Waste Into Clean Water
News29 June 2026

Microwave Biochar Transforms Waste Into Clean Water

A review published in *Biochar* by Rasool et al. compared conventional and microwave-assisted pyrolysis, finding that microwave-derived biochars exhibit higher surface area, stronger mesoporosity, and greater retention of functional groups. For the biochar sector, the findings indicate microwave-assisted pyrolysis can produce more effective adsorbents for heavy metals and organic pollutants, though reactor scale-up and energy balance challenges must be resolved before industrial adoption.

Jamco joins Japanese partners to recycle and reuse CFRP from retired aircraft
News29 June 2026

Jamco joins Japanese partners to recycle and reuse CFRP from retired aircraft

Jamco joined a NEDO-led Japanese consortium—including Nagoya University, Subaru, and JAXA—to develop a circular economy supply chain for recovering and reusing CFRP from retired aircraft. The project targets a persistent gap in the carbon fiber composites sector: the lack of validated processes and standards needed to reintroduce recycled CFRP into certified aircraft components.

New concrete mixes leave the lab and join the material market
News29 June 2026

New concrete mixes leave the lab and join the material market

Holcim conducted biochar concrete pilot projects across Europe in 2025, including test pours with Canary Wharf Group using biochar from forestry residues and coffee grounds, producing their first net-zero concrete mix. The trials signal a shift for the biochar sector from experimental additive to commercial-scale construction material, with Holcim describing it as a high-performance emissions-reduction input rather than a niche product.

Microwave biochar could help turn waste biomass into cleaner water and safer soils
News29 June 2026

Microwave biochar could help turn waste biomass into cleaner water and safer soils

A review published in the journal *Biochar* compared conventional and microwave-assisted pyrolysis as production routes for biochar, finding that microwave-derived biochars typically exhibit higher surface area, stronger mesoporosity, and greater retention of functional groups relevant to pollutant capture. For the advanced carbon materials sector, the findings highlight biochar's expanding role beyond remediation into electrode materials and catalysis, while noting that reactor scale-up and energy balance challenges must be resolved before microwave-assisted pyrolysis reaches industrial viability.

Water in biomass may help shape better biochar, study finds
News29 June 2026

Water in biomass may help shape better biochar, study finds

A study published in *Biochar* (2026) found that both free and bound water in lignocellulosic biomass slow pyrolysis reaction intensity and increase biochar yield, with ~30% moisture content identified as a practical optimum balancing yield and energy demand. For the biochar sector, the findings provide a molecular-level basis for using feedstock moisture as a controllable process variable to tailor biochar yield and properties without pre-drying.

Diverse European territories turn biowaste into local circular business opportunities
News29 June 2026

Diverse European territories turn biowaste into local circular business opportunities

The EU-funded HOOP project helped eight European cities and regions mobilise EUR 124 million to convert urban biowaste into circular bioeconomy outputs including biochar, biogas, bioplastics, and agricultural nutrients. Biochar production via pyrolysis emerged as a replicable pathway across multiple territories, with Kuopio (Finland) establishing an operational pilot plant and Münster (Germany) confirming technical feasibility, signaling growing municipal-scale demand for pyrolysis infrastructure relevant to the biochar sector.

Combining Iron Manganese Biochar with Strategic Irrigation Minimizes Grain Cadmium
News29 June 2026

Combining Iron Manganese Biochar with Strategic Irrigation Minimizes Grain Cadmium

Tong Sun and colleagues published a study in *Biochar* (2026) showing that iron-manganese oxide modified biochar combined with either continuous flooding or aerobic irrigation reduces grain cadmium to 0.05 mg/kg and total mercury to 0.02 mg/kg in co-contaminated rice paddies. The findings demonstrate a functional agricultural application for engineered biochar, where surface chemistry modifications directly determine remediation performance across competing heavy-metal pathways in soil.

Biochar Hydrogel Shines in Solar Water Purification
News29 June 2026

Biochar Hydrogel Shines in Solar Water Purification

Researchers at Harbin Institute of Technology (Shenzhen) embedded sorghum straw biochar into a polyzwitterionic hydrogel and achieved a solar evaporation rate of 3.57 kg m⁻² h⁻¹ under one-sun irradiation, roughly 1.87 times higher than the biochar-free hydrogel. The study demonstrates that low-cost biomass-derived biochar can simultaneously enhance photothermal conversion, heat localization, and water molecule activation in hydrogel evaporators, offering a viable pathway for biochar use in solar-driven desalination materials.

From bin to biogas
News29 June 2026

From bin to biogas

TNB Research has operated an anaerobic digestion and torrefaction pilot facility in Kajang since 2018, processing up to 350kg of food waste daily to produce biogas with 60–65% methane content and 10–30kg of biochar per torrefaction cycle. The biochar output is being evaluated for carbon material applications, soil improvement, and solid fuel enhancement, with data from the pilot intended to inform future scale-up decisions.

Anton Paar launches automated oil absorption tester for battery materials
News29 June 2026

Anton Paar launches automated oil absorption tester for battery materials

Anton Paar launched the Brabender AbsorptoMeter, an automated instrument that measures oil absorption numbers (OAN and COAN) in powders including carbon black, recovered carbon black, graphene, and battery electrode materials, supporting ASTM and ISO test methods. The system automates a previously manual testing process for carbon black and graphene characterisation, with software-controlled titration, real-time torque monitoring, and enterprise data integration via OPC UA and Brabender WebAPI.

News23 June 2026

Sparc Technologies' ecosparc graphene additive adopted by Petro Vietnam Paint

Petro Vietnam Paint will incorporate Sparc Technologies' ecosparc graphene additive into its PERAPHENE steel protective coatings range, following in-house and third-party testing that showed improved anti-corrosion performance, with commercial availability expected later in 2026. The adoption adds to ecosparc's growing commercial traction in the graphene-enhanced protective coatings sector, where graphene additives are being validated for marine, offshore, and industrial steel infrastructure applications.

News23 June 2026

Electronic structure, intervalley coupling of artificial and genuine graphene superlattices

Researchers studied the electronic structure and intervalley coupling of graphene superlattices, comparing artificial superlattices with genuine graphene-based ones, including monolayer/bilayer graphene heterostructure configurations analyzed via transfer matrix theory. The findings advance understanding of electron behavior in graphene superlattices, which is relevant to engineering graphene's electronic properties for applications in graphene-based devices and materials.

Solidion Technology Withdraws Previously Filed Registration Statement
News18 June 2026

Solidion Technology Withdraws Previously Filed Registration Statement

Solidion Technology (Nasdaq: STI) withdrew its previously filed Form S-1 registration statement with the SEC on June 10, 2026, citing unfavorable market conditions and deal terms. The move affects a company developing graphene-enabled silicon anodes and biomass-based graphite materials, signaling that capital access constraints may slow near-term commercialization of these advanced carbon battery materials.

Building Better with Advanced Carbons
Opinion Article12 June 2026

Building Better with Advanced Carbons

The Advanced Carbons Council published an overview of graphene and other advanced carbon materials being adopted in construction, citing applications in concrete (Concretene, First Graphene, Versarien), asphalt, and corrosion-resistant coatings (Petronas). These developments indicate growing commercial deployment of graphene additives in construction materials, with documented performance gains in compressive strength, road durability, and steel protection at low material loadings.

Building Better with Advanced Carbons
Position Paper12 June 2026

Building Better with Advanced Carbons

The Advanced Carbons Council highlights graphene and related carbon materials being adopted in construction applications including concrete additives (Concretene, First Graphene), graphene-reinforced 3D-printed components (Versarien), asphalt modification, and corrosion-resistant coatings (Petronas). For the advanced carbon materials sector, construction has emerged as a leading commercial deployment area, with multiple suppliers demonstrating validated, scalable products that improve strength, durability, and emissions performance without requiring major process changes.

The Graphene Commercialization Maturity Journey
Research Summary12 June 2026

The Graphene Commercialization Maturity Journey

Terrance Barkan of The Graphene Council published a framework mapping the commercialization maturity journey of graphene through stages from discovery to mature commercialization, identifying nine recurring obstacles including capital access, regulation, standardization, and value chain complexity. The framework positions graphene as approaching proven commercial viability in multiple application areas—including composites, construction materials, and thermal management—while arguing that its "killer application" lies in broad adoption as a performance-enhancing additive across sectors rather than in any single use case.

News10 June 2026

Sicona Battery Technologies hits 600 Wh/kg with graphene-silicon anode pilot

Sicona Battery Technologies validated 600 Wh/kg energy density in graphene-wrapped silicon anode pouch cells at its Wollongong pilot line, achieving 1,200-cycle retention above 80 percent capacity with a 200 MWh/year scale-up targeted for late 2027. The result advances graphene's role as a structural buffer for silicon anodes, a combination the carbon materials and battery sectors have pursued to overcome silicon's volumetric expansion problem at commercial scale.

Brookhaven National Lab reveals new graphene band structure tunable by magnetic field
News10 June 2026

Brookhaven National Lab reveals new graphene band structure tunable by magnetic field

Researchers at Brookhaven National Laboratory used a 36 Tesla magnet to observe a previously unknown flat-band state in pristine graphene that emerges at integer multiples of an applied magnetic field, publishing the findings in Physical Review Letters. The tunable band structure could inform the design of graphene-based Hall sensors and resistance metrology standards.

Hefei Institutes demonstrate graphene-based terahertz modulator at room temperature
News10 June 2026

Hefei Institutes demonstrate graphene-based terahertz modulator at room temperature

Scientists at the Hefei Institutes of Physical Science demonstrated a graphene-based terahertz modulator achieving 92% modulation depth at 0.4 THz and switching speeds approaching 100 GHz, with results published in Nature Photonics. The device's fabrication in standard semiconductor cleanroom processes positions graphene as a viable material for scalable 6G wireless components operating in the terahertz band.

Nanospan launches graphene-enhanced corrosion inhibitor for offshore wind farms
News10 June 2026

Nanospan launches graphene-enhanced corrosion inhibitor for offshore wind farms

Nanospan commercially launched GalvaShield-G, a graphene-enhanced corrosion inhibitor coating for offshore wind turbine towers and monopile foundations, priced at EUR 18 per litre and produced at its Hyderabad facility at 1,200 tonnes per annum capacity. The product demonstrates a commercial application of graphene in protective coatings for harsh marine environments, with third-party-validated maintenance interval extension from 5 to 12 years supporting the case for graphene's functional value in infrastructure composites.

Tsinghua publishes scalable CVD process for wafer-scale graphene transfer with <1% defects
News10 June 2026

Tsinghua publishes scalable CVD process for wafer-scale graphene transfer with <1% defects

Tsinghua University researchers published a CVD process in Nature Materials that produces single-crystal graphene across 12-inch silicon wafers with defect densities below 1%, using a copper-nickel alloy substrate and a dry-transfer method, achieving carrier mobilities above 16,000 cm²/V·s. The process is compatible with existing semiconductor fab infrastructure and has been licensed to SMIC and TSMC, advancing the prospect of graphene integration into commercial microelectronics manufacturing.

Is There a Material Stronger than Graphene at the Nanoscale?
News10 June 2026

Is There a Material Stronger than Graphene at the Nanoscale?

Researchers at the National University of Singapore developed monolayer amorphous carbon (MAC), a two-dimensional material with toughness measured at eight times that of graphene's ~130 GPa tensile strength benchmark. The finding suggests that engineered structural disorder in carbon nanomaterials may offer performance advantages over crystalline perfection, with potential implications for composite reinforcement and next-generation carbon material design.

News10 June 2026

Designing Graphene Defects Opens New Possibilities for Future Tech

Researchers from the University of Warwick, University of Nottingham, and Diamond Light Source grew graphene films with controllable defect densities using a molecule called azupyrene, which naturally incorporates five- and seven-membered carbon rings, with defect levels tuned by growth temperature. The method gives the graphene sector a reproducible route to engineer surface reactivity, with direct implications for graphene-based catalysts and gas sensors.

Inspire Nano licenses graphene electrode platform to Furukawa Electric
News10 June 2026

Inspire Nano licenses graphene electrode platform to Furukawa Electric

Inspire Nano licensed its graphene-coated copper electrode platform to Furukawa Electric for Asia-Pacific high-frequency signal transmission applications in a deal worth $9 million upfront plus royalties. The graphene coating reduces skin-effect losses at frequencies above 1 GHz by 22 percent, with direct relevance to graphene commercialization in 5G/6G infrastructure and data center cable markets.

Peking University researchers develop graphene electrode for high-cycle solid-state lithium battery
News10 June 2026

Peking University researchers develop graphene electrode for high-cycle solid-state lithium battery

Peking University researchers developed a graphene-coated lithium metal electrode that allows solid-state batteries to retain 92% capacity after 5,000 cycles, with findings published in Joule. The graphene coating's role in suppressing dendrite growth at the lithium-sulfide electrolyte interface advances a known barrier to commercial solid-state battery adoption, with scale-up trials planned with two Chinese manufacturers for late 2026.

News10 June 2026

Korea University team grows centimetre-scale single-crystal graphene on copper foil

A Korea University team led by Professor Lee Ji-hye grew 4 cm × 4 cm single-crystal graphene domains on copper foil via modulated CVD with hydrogen pressure cycling, surpassing the previous ~2.5 cm record, as reported in Nature Nanotechnology. The grain-boundary-free films, compatible with existing industrial CVD reactors, achieve carrier mobilities up to 600,000 cm²/V·s, advancing the viability of large-area defect-free graphene for high-performance electronics.

Machine learning proves graphene is hydrophobic
News10 June 2026

Machine learning proves graphene is hydrophobic

Researchers at the Institute for Basic Science and Korea University used machine-learning interatomic potentials to demonstrate that pristine graphene is intrinsically hydrophobic, with apparent hydrophilic behavior in prior experiments caused by water molecules intercalating beneath monolayer graphene and canceling spectroscopic signals. The findings clarify graphene's true interfacial properties, with direct implications for graphene-based desalination membranes, nanofluidic devices, and fuel cells where unintended water intercalation must be accounted for in design.

How Hong Kong's Graphene-X turned a wonder material into a million-dollar business
News10 June 2026

How Hong Kong's Graphene-X turned a wonder material into a million-dollar business

Hong Kong-based Graphene-X, founded by Jorge Barros in 2019, built a multi-million-dollar apparel brand around graphene-infused fabrics, generating $500,000 in Kickstarter pre-sales and partnering with Shanghai-based certified graphene producer Kyorene to develop graphene-woven yarns for products ranging from shell jackets to polo shirts. The brand demonstrates a viable commercial pathway for graphene in consumer textiles beyond its established industrial uses in electronics, batteries, and composites, with major outerwear players including Arc'teryx, The North Face, and Stone Island also integrating the material into their pipelines.

Osaka University team builds graphene gas sensor that detects a single CO2 molecule
News10 June 2026

Osaka University team builds graphene gas sensor that detects a single CO2 molecule

A research team at Osaka University built a graphene nanoribbon-based gas sensor capable of detecting individual CO2 molecules at ambient pressure, achieving detection limits below 10 parts per trillion, as published in Nature Materials. The result demonstrates graphene nanoribbons as a viable platform for ultra-sensitive gas detection, with potential applications in environmental monitoring and medical breath analysis.

EMPA shows graphene composite reduces aircraft de-icing energy by 60%
News10 June 2026

EMPA shows graphene composite reduces aircraft de-icing energy by 60%

Researchers at EMPA demonstrated a graphene-composite leading-edge skin that reduces aircraft de-icing energy consumption by 60%, achieving ice shedding at 5 W/cm² in panels tested at -25°C and 240 km/h after 1,200 cycles without delamination. The result advances graphene's case as a functional heating element within carbon-fibre-reinforced polymer structures for aerospace applications, with EMPA now scaling production toward trial integration in a commercial trainer aircraft.

News10 June 2026

CSIC develops graphene-polymer separator for safer lithium-ion batteries

CSIC researchers developed an 18-micron graphene-polymer composite separator combining polypropylene with 0.5 wt% reduced graphene oxide, achieving 4x greater puncture resistance and a 60% reduction in thermal-runaway initiation temperatures in lithium-ion batteries. The development advances reduced graphene oxide as a functional additive in battery separators, with pilot-scale production underway alongside a Spanish cell manufacturer targeting NCM-based EV applications.

Modular NASA-inspired sleeping bag offers comfort down to -22°F
News10 June 2026

Modular NASA-inspired sleeping bag offers comfort down to -22°F

Graphene-X, a Hong Kong-based outdoor gear company, launched the Tardigrade Sleeping System via Kickstarter, a modular sleeping bag rated to -22°F that incorporates graphene-based materials. The product signals growing commercial application of graphene in consumer thermal regulation gear beyond industrial and electronics uses.

News10 June 2026

NUS unveils graphene biosensor detecting tumour markers in saliva

A team at the National University of Singapore developed a graphene field-effect transistor biosensor that detects four oral cancer biomarkers from saliva in 90 seconds, achieving 94.2% sensitivity and 91.8% specificity in a 220-patient clinical pilot. The device demonstrates a scalable diagnostic application for functionalized graphene, with a spinout company pursuing commercialization and a projected per-test cost under 4 USD.

University of Exeter demonstrates graphene-based UV photodetector with 10x faster response
News10 June 2026

University of Exeter demonstrates graphene-based UV photodetector with 10x faster response

The University of Exeter's Centre for Graphene Science demonstrated a graphene-zinc oxide heterostructure UV photodetector with an 8-nanosecond response time at 365 nm, 10x faster than commercial silicon devices, as published in Advanced Materials. The result advances graphene's case as a functional material in high-speed optoelectronics, with Hamamatsu Photonics engaged for industrial-scale validation and patents filed across three jurisdictions.

News10 June 2026

GraphEnergyTech's graphene solar breakthrough, ICYMI

GraphEnergyTech, the University of Cambridge, Taiwan Perovskite Solar Corporation, and ITRI launched the GETPSC project to develop graphene-based electrodes as a replacement for silver electrodes in perovskite solar cells. The project targets a known barrier to commercial-scale perovskite adoption, with potential secondary applications for GraphEnergyTech's conductive carbon technology in batteries, supercapacitors, and electronics.

Premier Graphene partners with Mitsubishi Pencil on conductive inks
News10 June 2026

Premier Graphene partners with Mitsubishi Pencil on conductive inks

Premier Graphene Inc and Mitsubishi Pencil Company signed a joint development agreement to co-develop graphene-based conductive inks for printed electronics, targeting two co-branded product launches in late 2026 with a combined first-year revenue target of 12 million USD. The deal advances commercial adoption of single-layer graphene dispersions in printed electronics applications such as RFID tags, smart packaging, and biosensor electrodes.

News10 June 2026

Harvard shows graphene membrane desalination with 40% less energy than reverse osmosis

Harvard researchers demonstrated a nanoporous single-layer graphene membrane that desalinates seawater at 40% lower energy than reverse osmosis, achieving 99.4% salt rejection over 1,000 hours at 12 bar, published in Science. The result advances graphene's viability as a functional membrane material at scale, with a 100 m³/day pilot plant planned in Carlsbad, California in collaboration with Suez Environnement and IDE Technologies.

Coaxing bilayer graphene into a single diamond-like layer for industrial use
News10 June 2026

Coaxing bilayer graphene into a single diamond-like layer for industrial use

Researchers led by Elisa Riedo at NYU applied mechanical pressure via nanoindentation to nitrogen-doped CVD bilayer graphene at room temperature, inducing a partial transition to diamond-like sp³ bonding that nearly doubled film stiffness, as reported in Advanced Materials Technologies. The use of standard CVD graphene and mild processing conditions makes this phase-transition pathway potentially compatible with industrial-scale fabrication of ultrathin wear-resistant coatings in the graphene and advanced carbon materials sector.

Advanced Graphene Products supplies graphene oxide to Boston Scientific for coating trial
News10 June 2026

Advanced Graphene Products supplies graphene oxide to Boston Scientific for coating trial

Advanced Graphene Products has begun supplying ISO 10993-certified graphene oxide from its Zielona Gora facility to Boston Scientific under a $4.2 million contract for a two-year, 480-patient FDA-approved clinical trial of antimicrobial-coated cardiac catheters. The trial represents a direct application of graphene oxide in regulated medical devices, with a potential commercial supply pathway if Boston Scientific proceeds to FDA submission.

Graphene Manufacturing Group & Tickford Racing join to improve efficiency on and off track
News10 June 2026

Graphene Manufacturing Group & Tickford Racing join to improve efficiency on and off track

Graphene Manufacturing Group (GMG) partnered with Australian Supercars team Tickford Racing to trial GMG's liquid graphene products, including G Lubricant and THERMAL-XR, across Tickford's workshop and event infrastructure. The partnership provides GMG with a real-world performance testing environment to generate documented case studies validating its graphene-based lubricant and thermal products for broader industrial customers.

Molecular Dynamics Simulations Reveal Fracture Mode Effects in Graphene with Parallel Cracks
News10 June 2026

Molecular Dynamics Simulations Reveal Fracture Mode Effects in Graphene with Parallel Cracks

Jin, Hong, Fonseca, and colleagues used MD simulations with AIREBO and ReaxFF potentials to study how parallel crack spacing affects fracture in H-passivated graphene, finding a brittle-to-ductile transition beyond a critical crack gap. The results show that crack geometry alone can tune graphene's fracture behavior, with direct implications for defect engineering strategies in graphene-based composites and devices.

Carbonova closes $25M Series B for graphene from methane process
News10 June 2026

Carbonova closes $25M Series B for graphene from methane process

Calgary-based Carbonova closed a $25M Series B led by BDC Capital to build a 1,500-tonne-per-year graphene nanotube and hydrogen demonstration plant in Calgary, targeting commissioning in late 2027. The process targets a delivered graphene cost under $35/kg, which, if achieved at scale, could pressure pricing across the carbon nanotube and advanced composites supply chain.

IISc shows graphene quantum dot LED with record blue emission efficiency
News10 June 2026

IISc shows graphene quantum dot LED with record blue emission efficiency

Researchers at the Indian Institute of Science published a graphene quantum dot LED achieving 23% external quantum efficiency in the blue spectrum in Nature Photonics, using sulfur-functionalized, size-controlled graphene quantum dots to reduce non-radiative recombination. The result advances graphene quantum dots as viable blue emitters for display applications, with the team already collaborating with Samsung Display on integration into commercial display stacks.

News10 June 2026

Graphene origami makes exotic material states more accessible

Researchers developed a graphene origami method using a polymer micro-tip to fold and twist graphene on silicon dioxide substrates, producing controlled stacking and twist-angle configurations from a single sample. The technique offers a more stable and cost-effective alternative to tear-and-stack fabrication for accessing quantum states in twisted few-layer graphene, which is relevant to graphene-based materials research.

News10 June 2026

Levidian and Zentek aim to set up a graphene-integrated filter plant in the Middle East

Levidian and Zentek have signed an agreement to explore building a graphene-integrated manufacturing facility in the Middle East, combining Levidian's methane-derived graphene production with Zentek's graphene-enhanced air filters. The deal signals growing regional demand for graphene-enhanced products and positions the Middle East as an emerging hub for graphene manufacturing and deployment across multiple industries.

Argo Graphene marks milestone test pour and launches second graphene concrete project
News10 June 2026

Argo Graphene marks milestone test pour and launches second graphene concrete project

Argo Graphene Solutions Corp. completed its first graphene-infused concrete test pour of 12.5 cubic meters in Bristol, Tennessee, and launched a second pour of 15 cubic meters at the same site, with compressive strength testing scheduled at intervals through Day 56 per ASTM C39 standards. The project provides field-scale data on graphene's performance in cement matrices, targeting up to 30% gains in compressive and tensile strength, which could support broader commercial adoption of graphene in construction materials.

HydroGraph Qualifies Hubron International as Fractal Graphene Compounding Partner
News10 June 2026

HydroGraph Qualifies Hubron International as Fractal Graphene Compounding Partner

HydroGraph added Hubron International, a Manchester-based masterbatch and conductive polymer compounder with over 90 years of experience, to its Fractal Graphene Compounding Partner Program on February 10, 2026. The partnership gives HydroGraph access to Hubron's global distributor network and established carbon nanomaterial processing capabilities, supporting broader commercial adoption of graphene in thermoplastic applications across automotive, electronics, and other sectors.

SK On signs five-year graphene additive supply contract with Hansolchemical
News10 June 2026

SK On signs five-year graphene additive supply contract with Hansolchemical

SK On signed a five-year, $180 million supply contract with Hansolchemical for 4,500 tonnes per annum of graphene additive for NCM811 cathodes, with shipments starting Q1 2027. The deal signals growing industrial-scale demand for graphene as a functional cathode additive in EV batteries, and will require Hansolchemical to expand its Gumi facility beyond its current 1,200 tonne per annum capacity.

News10 June 2026

Manchester team reports room-temperature superconductivity in twisted bilayer graphene

University of Manchester researchers led by Professor Catalina Espinosa reported room-temperature superconductivity (zero resistance up to 291 K) in twisted bilayer graphene films at a 1.05-degree twist angle under uniaxial strain, published in Nature this week. If replicated, the finding would establish a viable pathway for graphene-based superconducting applications, a property previously unachievable in this material above ~5 K.

News10 June 2026

Levidian and Graphmatech partner to advance graphene applications for clean hydrogen

Levidian and Graphmatech announced a partnership to co-develop graphene-based polymer composites for hydrogen applications, including pipelines and pressure vessels where graphene reduces hydrogen gas leakage by up to 83%. The collaboration combines Levidian's graphene production with Graphmatech's dispersion technology, targeting a growing market for high-performance composites in the hydrogen sector.

First Graphene claims major boost to perovskite solar cell efficiency
News10 June 2026

First Graphene claims major boost to perovskite solar cell efficiency

First Graphene and Halocell Energy, in collaboration with Queensland University of Technology, reported that adding First Graphene's PureGraph graphene product to Halocell's perovskite solar cells raised efficiency to 30.6% and cut production costs by up to 80% by replacing gold and silver conductors via roll-to-roll processing. The result demonstrates a commercial application for graphene as a functional coating material in photovoltaics, with cost and efficiency metrics that could accelerate perovskite cell adoption over conventional silicon.

News10 June 2026

Lancaster University patents graphene-enhanced concrete with 30% less cement

Lancaster University has filed patents on a graphene oxide-enhanced concrete mix using 0.025 wt% graphene oxide that reaches 52 MPa compressive strength with 30% less Portland cement. The development indicates a scalable construction application for graphene oxide that could expand commercial demand for the material while reducing concrete's carbon footprint by 23% per cubic metre.

Solidion Technology Granted 7 New Patents for Composite Battery Anodes
News9 June 2026

Solidion Technology Granted 7 New Patents for Composite Battery Anodes

Solidion Technology (Nasdaq: STI) was granted 7 new US patents on June 8, 2026, bringing its total anode materials patent portfolio to 130 US patents. The patents cover a silane-free, graphene-enabled silicon anode process that raises Si loading in porous graphene balls to 90%, directly addressing cost, safety, and energy density limitations in current CVD-based carbon-silicon composite anode manufacturing.

News9 June 2026

A high-performance and salt-resistant 3D solar evaporator based on recycled carbon fiber

Researchers developed a 3D porous solar evaporator using recycled carbon fiber combined with a CuO/reduced graphene oxide photothermal layer to improve solar-driven water evaporation performance and salt resistance. The work demonstrates a pathway for valorizing recycled carbon fiber as a functional substrate in graphene-based photothermal composites, linking carbon fiber recycling with emerging solar evaporation applications.