WE ENABLE THE NEXT GENERATION
TEXTILES, COMPOSITES & ENERGY

Multifunctional
Composites

Sustainable Energy
Materials


Next Generation Textiles

E-heating fabrics

Areas of application
Interior heating for vehicles, warm cases for electronics in arctic conditions, actively heated garments
Unique value
Graphene coating on textiles enables uniform and powerful Joule heating.

Flame retardant coatings

Areas of application
Welding shields, Vehicle Fire blankets, Flame/sparks interior safety
Unique value
Ultrathin and lightweight graphene coating increases flame retardance of the glass fibers for at least 20 times at 1500 C. Coated glass fiber blanket is at least 2 times lighter than competing basalt solution

Electromagnetic (EM) shielding coatings

Areas of application
Automotive electronics, wiring, telecommunication, aerospace, defence
Unique value
Graphene provides ultrathin, lightweight, and flexible coating that shields against the EM field in wide frequency range.

Electrostatic discharge (ESD) coatings

Areas of application
electronics manufacturing, telecommunications, aerospace, healthcare, automotive, and cleanroom environments
Unique value
Graphene coating is lightweight, thin & flexible, applicable on variety of materials (both natural & synthetic), and it provides an efficient electrostatic discharge protection.

Next Generation Composites

Composite battery casing for EVs

Battery casings made of graphene coated glass fiber possess increased flame resistantce (20 times better), ESD and EMI shielding property (up to 80 dB). With no need in metal at all.

Areas of application
Lightweight (30 % lighter), flame resistant (20 times better), EMI (80 dB); no metals, environmentally sustainable, recyclable.
Unique value
Lightweight (30 % lighter), flame resistant (20 times better), EMI (80 dB); no metals, environmentally sustainable, recyclable.

Electrostatic Discharge (ESD) composites

Graphene coated glass fibers grants electrical conductivity for fiber reinforced plastic (FRP) and ESD properties

Areas of application
Lightweight, just 1-5 g per kg of added weight, no need for conductive fillers in resin, better integrity of the composite, durability.
Unique value
Lightweight, just 1-5 g per kg of added weight, no need for conductive fillers in resin, better integrity of the composite, durability.

Composites with shielding of EM field

Graphene coated fiber reinforcement grants high level of electromagnetic (EMI) shielding for FRP composite  structures

Areas of application
Lightweight, just 1-5 g per kg of added weight, metal-free, high durability, high efficiency (20 – 100 dB) within wide range of frequencies (MHz – THz)
Unique value
Lightweight, just 1-5 g per kg of added weight, metal-free, high durability, high efficiency (20 – 100 dB) within wide range of frequencies (MHz – THz)

Electrically heating layers in composites

Highly efficient resistive heaters based on graphene coated glass fibers integrated inside the composite part with a function of de-icing.

Areas of application
Uniform heating, high power, lightweight, compatibility with all composite production methods, metal-free.
Unique value
Uniform heating, high power, lightweight, compatibility with all composite production methods, metal-free.

Acid resistant composites

Graphene coating of glass fiber and PAN protects the fibers against damage from strong acids, like HF, granting longer life and higher safety for chemicals transportation industry

Areas of application
Improved composite performance, high resistance against acids, longer exploitation life of the equipment, environmentally sustainable process.
Unique value
Improved composite performance, high resistance against acids, longer exploitation life of the equipment, environmentally sustainable process.

Moisture stable natural composites

Graphene coating of natural fibers grants stable barier against the liquid and protects fibers against wetting and swelling, keeping the integrity of the natural composite structure

Areas of application
Improved composite performance, protection against microflora, enhanced dimensional stability, enabling of eco-friendly composite materials.
Unique value
Improved composite performance, protection against microflora, enhanced dimensional stability, enabling of eco-friendly composite materials.

Electrical circuit integrated in composites

Coating of graphene patterns on glass fiber reinforcement allows to create electrically conductive circuits of any design and to have them integrated & functioning inside the composite structure

Areas of application
Lightweight and space-saving design, enhanced structural integrity, multi-functional capabilities, design flexibility and customization, corrosion resistance, scalability of assembling processes, environmental sustainability.
Unique value
Lightweight and space-saving design, enhanced structural integrity, multi-functional capabilities, design flexibility and customization, corrosion resistance, scalability of assembling processes, environmental sustainability.

Next Generation Energy

Green graphene manufacturing from Li-ion batteries waste

Areas of application
Resource efficiency, cost-effective production, waste reduction, lower carbon footprint, circular economy contribution, reduced reliance on mining.
Unique value
Resource efficiency, cost-effective production, waste reduction, lower carbon footprint, circular economy contribution, reduced reliance on mining.

Environment friendly graphene electrodes for fuel cells

Areas of application
High surface area, compatibility with different catalyst materials, high flexibility and durability, environmental sustainability, can be produced using scalable
Unique value
High surface area, compatibility with different catalyst materials, high flexibility and durability, environmental sustainability, can be produced using scalable

Sustainable catalysts for future hydrogen fuel cell

Areas of application
Enhanced catalytic activity, large active area & more active sites for OR reactions; reduced amount of platinum required; high recyclability
Unique value
Enhanced catalytic activity, large active area & more active sites for OR reactions; reduced amount of platinum required; high recyclability
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