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MSE PRO™ Single Crystal Lithium Iron Phosphate LiFePO4 Powder, 200g– MSE Supplies LLC

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MSE PRO Single Crystal Lithium Iron Phosphate LiFePO4 Powder for Li-ion Battery Cathode, 200g

SKU: PO0550

  • $ 19995


MSE PRO™ Single Crystal Lithium Iron Phosphate LiFePO4 Powder for Li-ion Battery Cathode, 200g

MSE PRO™ Single Crystal LiFePO4 is prepared for meeting the needs of more high-end technology , especially the battery materials and electric vehicles. This Single Crystal LiFePO4 has high safety and long lifespan. These advantages make single crystal LiFePO4 widely used in electric vehicles, energy storage systems, power tools, and other fields.

  • High Safety: Excellent thermal and chemical stability, reducing the risk of thermal runaway even under high temperatures or overcharge conditions.
  • Long Lifespan: Exceed 2000 charge and discharge cycles, making them more durable than other lithium batteries.
  • High Stability: Perform well in both high and low temperatures, suitable for various environmental conditions.
  • High Discharge Efficiency: Maintain a stable discharge voltage platform with minimal voltage change during discharge, providing a stable power output.
  • Low Self-Discharge Rate: Low self-discharge rate during storage, retaining a high charge over long periods of inactivity.

MSE Supplies offers a range of Single Crystal Powders. Please contact us for more information.

Specifications:

SKU#

PO0550

Particle Size Distribution

D10 (um) :>0.25

D50 (um) :1.3±0.5

D90 (um) :<10

Appearance Ash black powder
Moisture ≤1000 ppm
SSA 12 ± 2  m2/g
Tap Density 0.8 ± 0.2 g/cm³
Carbon Content 1.45 ± 0.2 %
Discharge Capacity ≥ 154 mAh/g
Coulombic Efficiency ≥ 95 %


Reference:

[1] Zhang, Yan, et al. "Ultralong Lifespan and Ultrafast Li Storage: Single‐Crystal LiFePO4 Nanomeshes." Small 12.4 (2016): 516-523.

[2] Yamanaka, Toshiro, et al. "Evolution and migration of lithium-deficient phases during electrochemical delithiation of large single crystals of LiFePO4." ACS Applied Energy Materials 1.3 (2018): 1140-1145.