
Product Name
Name:Microcrystalline graphite fiber paper
Product Overview
Microcrystalline graphite fiber is a material that can be used as a negative electrode for sodium ion batteries. It has high sodium capacity and conductivity, making it suitable as a negative electrode material for sodium ion batteries with high rate discharge (initial coulombic efficiency>90%), and can also serve as a substrate for growing other negative electrode materials.
Its thickness is usually 100-200 μ m. The advantage of this material is that its microstructure is composed of microcrystalline graphite, which has good conductivity and structural stability. In sodium ion batteries, microcrystalline graphite fibers can provide fast ion transport channels, which helps improve the rate performance and cycling stability of the battery.
Technical Parameter
Appearance:Black film
Thickness:100-200μm
Product Features
High temperature resistance: Graphite fiber has a very high melting point and can maintain sufficient strength and stiffness even when heated to 2000 ¡ãC making it suitable for applications in high-temperature environments.
Corrosion resistance: It has high corrosion resistance to chemicals such as acids, alkalis, and solvents, and can maintain stable performance in highly corrosive environments.
Excellent thermal conductivity: Microcrystalline graphite fibers have high thermal conductivity and low thermal expansion coefficient, which is conducive to the conduction and dispersion of heat.
Application Fields
Electrochemical field: As an electrode material or current collector, it plays an important role in electrochemical energy storage devices such as supercapacitors and sodium ion batteries.
Microbial fuel cell field: Utilizing its conductivity and stability as electrode materials for microbial fuel cells.
In the field of composite materials, as a reinforcing material, composite materials with high strength and high modulus are prepared by combining with materials such as resin and metal.
In the field of flexible electronics, the flexibility of microcrystalline graphite fiber paper makes it potentially applicable in flexible electronic devices such as wearable devices and flexible display screens.
Related Information
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