Activated carbon for supercapacitors, also commonly referred to as supercapacitor activated carbon or carbon electrode material, is a material with unique properties that is specifically used in the manufacture of supercapacitors. Supercapacitor activated carbon has an extraordinarily large specific surface area, which is the basis for its excellent performance. The high specific surface area means that more charge can be stored on the surface of the electrodes, thus increasing the capacity of the capacitor. Excellent electrical conductivity enables rapid charge transfer within and between electrodes, which facilitates rapid charging and discharging of the capacitor. Reasonable distribution of pore structure, such as the presence of mesopores and micropores, contributes to the penetration of electrolyte and storage of charge. Activated carbon with low ash and impurities can reduce the resistance inside the capacitor and improve the overall performance of the capacitor.

 Technical Parameter:     

Particle size 1-10 μm
Specific surface area ~2500m2/g
Pore volume 0.3-0.7cm3/g
Pore diameter 2.4-3.2 nm

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Application areas:

Energy storage device: as the core electrode material of supercapacitor, it is used in the fields of new energy vehicles (fast charging), rail transport (energy recovery), smart grid (frequency regulation and voltage stabilisation) and so on.

Military and industry: high power demand scenarios such as electromagnetic catapults for naval aircraft, laser weapons, and industrial waste gas treatment, heavy metal recycling, etc.

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