3D Graphene Foam

3D Graphene Foam
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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.


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 as electrode materials in supercapacitors and lithium-ion batteries due to its high surface area and conductivity.
- Flexible and Wearable Electronics: Serves as a lightweight, conductive scaffold for sensors, flexible circuits, and stretchable devices.
- Biomedical Scaffolds: Supports cell growth and tissue engineering, benefiting from its porous structure and biocompatibility.
- Electromagnetic Interference (EMI) Shielding: Effectively absorbs and reflects electromagnetic waves in aerospace, communication, and defense.
- Chemical and Gas Sensors: Enables highly sensitive detection of gases and chemicals thanks to its reactive surface and 3D network.
Electromagnetic Interference (EMI) Shielding
Battery and Energy Storage
Electronic Devices
High-Temperature Sensors
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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