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StonyLab

Silicon-Carbon Anode Material for Lithium-Ion Batteries (Porous Carbon-Deposited Silicon), High Capacity > 1800 mAh/g, High Initial Efficiency > 90%

Regular price $180.00
Regular price Sale price $180.00
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About this item

  • Ultra-High Capacity & Efficiency: delivers a first reversible capacity of ≥ 1800 mAh/g (typical 1994.7 mAh/g at 1.5 V cutoff) with a first Coulombic efficiency of ≥ 91% (typical 92.1%), providing high energy density for next-generation lithium-ion battery anodes
  • Porous Carbon-Silicon Structure: resin-based porous carbon framework (multi-hole carbon-deposited silicon) with 50% silicon content, effectively buffering volume expansion and improving structural stability during cycling
  • Optimized Particle & Physical Properties: D10 ≥ 3.0 μm (typical 4.25 μm), D50 = 8.0 ± 2.0 μm (typical 8.62 μm), D90 ≤ 15.0 μm (typical 13.23 μm); BET ≤ 6.0 m²/g (typical 3.62 m²/g) and tap density ≥ 1.0 g/cm³ (typical 1.22 g/cm³), supporting slurry processability and electrode compaction
  • High Purity & Low Impurities: Fe ≤ 50 ppm (typical 33.25 ppm), Cr ≤ 50 ppm (24.22 ppm), Ni ≤ 20 ppm (11.13 ppm); total magnetic impurities ≤ 1.0 ppm (typical 0.65 ppm), ensuring material safety and batch consistency
  • Rate & Application Notes: delivers stable rate performance (0.2C-3C range) and cycling stability over 50 cycles at 0.1C; material should be stored under sealed conditions, and half-cell testing is recommended using carbon-coated copper foil for improved interface compatibility

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