Carbon nanomaterials
Carbon nanomaterials exhibit exceptional electrical, thermal, and mechanical properties, making them a core component of next-generation high-performance composite materials.
Product Series

Graphene
A two-dimensional material composed of a single layer of carbon atoms, featuring exceptional electrical and thermal conductivity as well as mechanical strength. Widely used in electronic devices, composite materials, and energy storage applications.
Key Features
- Resistivity as low as 10^-6 Ω·cm
- Thermal conductivity up to 3000-5000 W/m·K
- Tensile strength exceeds 100 GPa
Technical Specifications

Single-walled carbon nanotubes
A one-dimensional nanomaterial formed by rolling single-layer graphene, offering exceptional field emission performance, mechanical strength, and electrical conductivity. Ideal for high-performance composites and electronic devices.
Key Features
- Aspect ratio up to 1000:1 or higher
- Tensile strength: 50–200 GPa
- Current density capacity 10^9 A/cm²
Technical Specifications

Carbon nanocages
Carbon nanomaterials with unique horn-like structures, high specific surface area, and porosity, suitable for gas adsorption, catalyst supports, and drug delivery systems.
Key Features
- Unique angular conical structure
- Specific Surface Area 800-1500 m²/g
- Rich micro- and mesoporous structures
Technical Specifications

Fullerene
Fullerene
A cage-like molecular structure composed of carbon atoms, featuring a unique three-dimensional spherical shape. It offers superior electron-accepting capabilities and antioxidant performance, making it widely used in biomedicine, cosmetics, and electronic materials.
Key Features
- Unique cage-like molecular structure
- Superior electron-accepting capability
- Powerful Antioxidant Performance
Technical Specifications
Graphene
A two-dimensional material made of a single layer of carbon atoms, offering exceptional electrical and thermal conductivity along with high mechanical strength. Widely used in electronic devices, composite materials, and energy storage applications.
Key Features
Resistivity as low as 10^-6 Ω·cm
Thermal conductivity up to 3000-5000 W/m·K
Tensile strength exceeds 100 GPa
Specific Surface Area 200-800 m²/g
Technical Specifications

Single-walled carbon nanotubes
A one-dimensional nanomaterial formed by rolling single-layer graphene, offering superior field emission performance, mechanical strength, and conductivity. Ideal for high-performance composites and electronic devices.
Key Features
Aspect ratio up to 1000:1 or higher
Tensile strength of 50-200 GPa
Current density capacity 10^9 A/cm²
Superior field emission performance
Technical Specifications

Carbon nanocages
Carbon nanomaterials with unique horn-like structures, high specific surface area, and porosity for gas adsorption, catalyst supports, and drug delivery systems.
Key Features
Unique angular conical structure
Specific Surface Area 800-1500 m²/g
Rich micro- and mesoporous structures
Excellent biocompatibility
Technical Specifications

Fullerene
Fullerene
A cage-like molecular structure composed of carbon atoms, featuring a unique three-dimensional spherical shape. It offers exceptional electron-accepting capabilities and antioxidant properties, making it widely used in biomedicine, cosmetics, and electronic materials.
Key Features
Unique cage-like molecular structure
Superior electron-accepting capability
Powerful Antioxidant Performance
Excellent biocompatibility
Technical Specifications

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