Imported Hard Carbon (5um)
Imported Hard Carbon (5um)
Imported Hard Carbon (5um)
Imported Hard Carbon (5um)

Imported Hard Carbon (5um)

$45.31
Model:
MA-EN-AN-0010
item_No
Specifications
Price
MA-EN-AN-001001
20g
$45.31

Details

This imported hard carbon powder, with a particle size of approximately 5 μm, is developed as a sodium-ion battery anode material. Sourced from biomass precursors, it is designed to deliver high initial coulombic efficiency and stable cycling performance, making it suitable for evaluating anode active material characteristics in research settings. The material requires sealed storage to maintain its properties. For electrochemical testing, a compatible sodium-ion electrolyte is recommended, and typical electrode preparation involves baking at 105°C for 4 hours. Physical particle size distribution data and half-cell test results are available for reference. This product supports fundamental studies on hard carbon anodes and performance optimization in sodium-ion battery systems.

The material needs to be sealed and stored

The electrolyte used during testing is sodium ion electrolyte KLD-NC06

Baking conditions for electrode: Bake at 105 ℃ for 4 hours

Sodium ion anode electrode material, hard carbon, gram capacity, high first efficiency, excellent cycling performance

 

This product is biomass hard carbon.

 

Physical and chemical properties
 
D10 < 4 μm (Data for reference only, not tested by COA)
D90 < 20 μm (Data for reference only, not tested by COA)
Test Item Unit Specification Test Result
Trace Metal Content Fe (Iron) ppm ≤30.0 22.32
  Zn(Zinc) ppm ≤5.0 N.D
  Cu (Copper) ppm ≤6.0 3.25
Physical Properties
 
(Particle Size Distribution)
D50 μm 5.0±1.0 5.46
Physical Properties BET Specific Surface Area m²/g ≤7.0 6.22
  Tap Density (TD) g/cm³ ≥1.5 1.62
  Moisture ppm ≤300.0 128.00
Electrochemical Performance First Reversible Capacity mAh/g 300.0±50.0 295.2
  First Coulombic Efficiency % ≥87.0 89.3

 

Half battery test:

 

 

CC - Constant current charging; DC - Constant current discharge.