Silicon-carbon alloy (950)-B

Silicon-carbon alloy (950)-B

$75.51
item_No
Specifications
Price
MA-EN-AN-003901
20g
$75.51

Details

This product is developed as a high-capacity anode material for lithium-ion batteries, specifically designed to enhance energy density in advanced energy storage systems. The silicon-carbon alloy 950 features a controlled particle size distribution (D50 around 10.3 µm) and a moderate BET specific surface area of 1.36 m²/g, balancing reactivity with processability. With an initial reversible capacity exceeding 905 mAh/g and a first-cycle coulombic efficiency of approximately 82.7%, it offers improved electrochemical performance compared to conventional graphite anodes. Typical applications include high-energy-density battery cells for electric vehicles and portable electronics, where higher capacity electrodes are critical for extending runtime or range. The material’s tap density of 0.84 g/cm³ and low moisture content support consistent electrode preparation and slurry processing.

Product Advantages:

Silicon-carbon alloy 950, a negative electrode material for lithium-ion batteries, offers high capacity and high energy density.

Physicochemical properties:

No. Category Test Item Unit Specification Test Result Test Method or Instrument
1 Physical Properties Particle Size Distribution - D10 (μm) ≥ 3.0 4.46 Laser Particle Size Analyzer
2   Particle Size Distribution - D50 (μm) 10.0 ± 3.0 10.32 Laser Particle Size Analyzer
3   Particle Size Distribution - D90 (μm) ≤ 26.0 21.52 Laser Particle Size Analyzer
4   BET Specific Surface Area (m²/g) 1.3 ± 0.2 1.36 Specific Surface Area Tester
5   Tap Density (TD) (g/cm³) 0.9 ± 0.2 0.84 Tap Density Tester
6   Moisture Content (%) ≤ 0.5 0.10 Moisture Analyzer
7 Electrochemical Performance Initial Reversible Capacity (mAh/g) ≥ 900.0 905.3 CR2032 Coin Cell (0.10~0.01) Stepwise Discharge / 0.1C Constant Current Charge (0.005-2.000V)
8   Initial Coulombic Efficiency (%) ≥ 82.0 82.7 CR2032 Coin Cell (0.10~0.01) Stepwise Discharge / 0.1C Constant Current Charge (0.005-2.000V)