3D Graphene Foam
3D Graphene Foam
- Custom sizes and standard sizes in stock
- Quick Lead Time
- Competitive Price
3D Graphene Foam is a lightweight, conductive material with a highly porous, interconnected network structure, created through CVD growth on metallic foam templates. Its large surface area and mechanical flexibility make it ideal for energy storage, sensors, and flexible electronics. As a leading supplier and manufacturer of premium graphite products, Shanghai Yuepeng can supply high-quality 3D graphene foam with various specifications and competitive prices, offering customized solutions to meet specific requirements.
3D Graphene Foam Data Sheet
Purity: | 99.5% |
Size | 100*100mm, or customized |
Thickness | 1.2 mm-1.6 mm |
Density | 4 mg/cm3 |
Pore Size | 580μm |
Surface density | 0.5-0.9 mg/cm2 |
Branch size | 50-200 μm |
Thermal Conductivity | >6 W/(m2k) |
Cell Size (PPI) | 110, or customized |
3D Graphene Foam Description
3D Graphene Foam is a lightweight, conductive porous material that maintains the exceptional electrical, mechanical, and thermal properties of traditional two-dimensional graphene while offering a three-dimensional network structure. Its interconnected carbon framework provides a large specific surface area and excellent electron mobility, making it ideal for use in energy storage devices, sensors, and thermal interface materials. The foam typically measures no more than 2 cm in width and 4 cm in length, with a consistent microstructure that supports uniform performance across the entire sample and automotive systems.
3D Graphene Foam Advantages
- High Electrical Conductivity: Maintains the excellent conductivity of graphene, making it ideal for sensors, electrodes, and energy storage devices.
- Large Surface Area: The 3D porous network significantly increases surface area, enhancing performance in catalysis and adsorption applications.
- Lightweight and Flexible: Extremely low density with mechanical flexibility, allowing use in lightweight structural and electronic applications.
- Thermal Stability: Withstands high temperatures, making it suitable for thermal interface materials and high-temperature electronics.
- Scalable and Customizable: Can be produced with controlled pore sizes, densities, and dimensions to match various industrial or research needs.
3D Graphene Foam Applications
- Energy Storage Devices: Used in supercapacitors and batteries as conductive scaffolds, enhancing charge storage capacity and cycling stability.
- Sensors and Detection Systems: Serves as a lightweight, highly conductive material for chemical, gas, and pressure sensors with rapid response times.
- Thermal Management: Applied in electronics and LED modules as heat spreaders due to exceptional thermal conductivity and lightweight structure.
- Catalysis and Chemical Reactions: Functions as a support for catalysts in fuel cells and chemical reactions, providing high surface area and conductivity.
- Flexible Electronics and Composites: Incorporated into wearable devices, flexible circuits, and composite materials to improve mechanical strength and electrical performance.
- Chemical Processing
- Energy Storage Devices
- Optical Sensors
- Thermal Management
- Semiconductor and Electronics
3D Graphene Foam Packaging
3D graphene foam products are typically packaged in vacuum-sealed bags to prevent moisture or contamination and wrapped with foam to cushion vibrations and impacts during transport, ensuring the quality of the products in their original condition.
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