The first mass production of ultra-high purity graphene nanomodifiers (CNO). The synthesis technology ensures economic benefits for large-scale implementation in the real sector.
Catalyst-Free Synthesis
01
This method eliminates the need for metal catalysts, ensuring product purity above 99.5% at a significantly lower cost
Ease of Integration
03
Disperses uniformly in any medium. Requires no expensive surfactants (PAV) and easily integrates into existing technical processes.
Ultra-Durable Morphology
02
The multi-layered sphere withstands cyclic loads up to 5 GPa, maintaining its integrity even in extreme friction units.
Scale and Economics
04
Production capacity of up to 951 t/year serving 31 industries with over 250 applications. An effective concentration of just 0.1–1.0% makes CNO an affordable base component.
Application Areas
More than 250 applications
We supply ready-made solutions (modifiers) that integrate into existing technological processes
Increasing compressive strength by up to 146% and reducing water permeability by 400%. Graphene acts as a nano-glue, densifying the structure and increasing the lifespan of constructions.
Innovative Asphalt
Doubling the road maintenance interval. Increasing the heat resistance of bitumen prevents rutting in the heat and cracking in the frost.
Energy-Efficient Insulation
Reducing the thermal conductivity of XPS and foams by 10–15%. CNO particles effectively block thermal radiation inside the insulation cells.
Dry Construction Mixes
Eliminating micro-cracks during the drying of plasters and adhesive compositions. Increasing adhesion and bending strength (up to +79.5%).
Motor Oils
Reducing friction by up to 80% and fuel economy from 3% to 10%. The "nano-bearing" effect protects parts from wear even under extreme loads.
Industrial Lubricants
Extending the service life of bearings and gearboxes by 2–10 times. Stable operation at temperatures above 0°C and in aggressive environments.
MWF for Metalworking
Increasing the resource of cutting tools by 40–60%. Sharp increase in heat dissipation and surface finish quality of parts.
Drilling Fluids
Reducing drill string friction in wells at depths of 3–5 km. Increasing thermal stability and lubricity under extreme pressure.
High-Strength Thermoplastics
Reinforcing pipes and canisters while maintaining material elasticity. Increasing elastic modulus and durability of products at ultra-low dosages.
Electrically Conductive Plastics
Creating antistatic housings with a high percolation threshold (0.7–1.4 vol%). The CNO carbon network ensures stable charge dissipation without losing plastic strength.
Automotive Tires and Rubber Goods
Reducing rubber heating and rolling resistance for fuel economy. Radical increase in wear resistance and tensile strength.
High-Tech Composites
Strengthening epoxy matrices in aerospace, shipbuilding, and sports equipment. Effective containment of micro-crack growth and increased impact toughness.
Li-Ion Battery Cathodes
Reducing charge transfer resistance by 76%. Accelerating lithium-ion diffusion by 125 times, which is critical for ultra-fast charging.
Next-Gen Silicon Anodes
The graphene shell buffers the volume expansion of silicon during charging.
Lead-Acid Batteries
Protection against sulfation and increased service life in Start-Stop systems. Improving charge acceptance and stable operation in Partial State of Charge (PSoC) mode.
Industrial Supercapacitors
Creating electrodes with an enormous useful surface area (420 m²/g). Instant energy storage and release for transport recuperation systems.
EMI Shielding and Stealth
Protecting electronics from interference by absorbing radio waves with nano-onions. Creating lightweight radio-absorbing coatings for aviation and communication systems.
Anti-Corrosion Protection
Forming an impermeable molecular barrier for salt ions and water. Doubling the service life of metal structures in marine environments.
Enhanced Oil Recovery (EOR)
Increasing the oil displacement coefficient from the reservoir by 17.5%. Changing rock wettability and reducing oil viscosity at tiny doses.
Smart Fertilizers (AgroTech)
Controlled plant nutrition for 3–6 months. Adsorption of nutrients and protection from washout by rain.
Targeted Drug Delivery
Spherical CNO acts as a "nano-capsule," transporting toxic drugs directly to affected cells.
MRI and CT Contrasting
CNO particles with a metal core serve as a safe and more effective replacement for toxic gadolinium.
Bone Implants and Scaffolds
A graphene-based carbon framework stimulates accelerated cell division and bone tissue growth. Composite implants surpass titanium in strength and ensure fusion twice as fast.
Active Heated Clothing
Graphene inks printed directly on fabric create a lightweight and flexible heating element. The material withstands multiple wash cycles and provides uniform soft IR heat.
Fire-Resistant Workwear
Creating a carbon barrier on fabric fibers cuts off oxygen access during thermal exposure.
Printed Electronics and RFID
Conductive inks with CNO allow printing microcircuits and antennas on flexible substrates.
High-Strength Filaments (FDM)
Modifying plastics (PLA/ABS) with graphene makes printed parts as strong as molded products.
Professional Sports Equipment
Adding CNO to carbon frames (skis, rackets) effectively dampens vibrations and prevents brittle chipping. Reduces friction of sliding surfaces of skis and snowboards on snow, reducing the need for wax.
Secure Packaging and Printing
A graphene barrier layer in cardboard packaging prevents gas exchange, replacing expensive aluminum foil.
Thermal Interfaces for Electronics
Graphene pads and pastes dissipate heat from processors 10 times more efficiently than standard solutions. Eliminates "throttling" (overheating) and significantly extends the life of server equipment.
Proven protocols for integrating graphene into clients' existing technological processes.
Easy Integration
Technological Consulting
Engineering support for projects based on R&D centers in the UAE, Europe, USA, and CIS.
Distribution Economics: From Lab to Market
76 million tons/year
Pyrohgen eliminates the main barrier of the graphene market - high cost.
Our pyrolysis technology allows us to obtain a high-purity product at a price dozens of times lower than market analogues while maintaining stable quality.
Product Line
Serial solutions and development of individual formulations for the customer's technical tasks
Dubai, Deira, Al Masraf Tower, Baniyas Road, Suite 17-08
Chengdu, 中科微电子产业技术西南 研究院孵化中心
Russia
UAE
China
Montecchio Maggiore, Montecchio Maggiore (VI), Via 2 Giugno 6
Miami, 4521 NE 5th Terrace, Oakland Park, FL, 33334
Italy
USA
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