High Purity LFP Cathode Material LiFePO4 Powder For Lithium Battery Produce
This high discharge rate LFP Cathode Material LiFePO4 Powder is the positive active material of the power battery.
Item No.: JT-LFP-2
Brand: Jingtong
Compliance: CE Certified
Order (MOQ): 1 Bag
Payment Terms: T/T, L/C, Western Union, Paypal
Product Origin: China
Warranty: One Year warranty with lifetime support
Lead Time: 7 Days
High Purity LFP Cathode Material LiFePO4 Powder For Lithium Battery Produce
This high discharge rate LFP Cathode Material LiFePO4 Powder is the positive active material of the power battery. Mainly used for energy storage/electric tools/light electric vehicles/miner's lamps/mobile power and so on.
Main Feature
1. High energy density, Its theoretical specific capacity is 170 mAh/g, Actual product-specific capacity can be more than 140 mAh/g (0.2 C, 25° C);
2. High security, is the safety of lithium-ion battery cathode material; Do not contain any harmful heavy metals;
3. long life: In 100% DOD (depth of discharge) conditions, can charge and discharge more than 2000 times; (reason: lithium iron phosphate lattice stability is good, the lithium ions embedded and emergence of lattice impact is not big, so it has good reversibility. The deficiencies are ionic conductivity electrode is poor, not suitable for large current charge and discharge, stuck in applications. Solution: in the electrode coating on the surface of conductive material, doped modified electrode. )
LFP cathode material concentrates the advantages of LiCoO2, LiNiO2, LiMn2O4 and their derivatives: The raw material of lithium iron phosphate cathode material is more extensive, cheaper and has no environmental pollution. Compared with LiCoO2, LiNiO2, LiMn2O4 and their derivative cathode materials, LiFePO4 LFP cathode material has outstanding advantages in cost, high-temperature performance and safety, and is expected to become the preferred cathode material for large-capacity, medium-high power lithium-ion batteries.
The industrialization and popularization of the material is of great significance to reducing the cost of the lithium-ion battery, improving battery safety, expanding the lithium-ion battery industry, and promoting large-scale and high-power lithium-ion batteries.
Specification
| Item | Unit | Test results | Test method | |
| Appearance | N.A | No agglomeration | visual inspection | |
| Tap density | g/cm3 | 1.132 | Contador tap density tester | |
| Resistance | Ω.cm | 114.9 | Mitsubishi electric conductivity tester | |
| Particle size | D10 | um | 0.549 | MASTERSIZER2000 refractive index 1.84% absorptivity 0.1% |
| D50 | um | 1.508 | ||
| D90 | um | 6.010 | ||
| Carbon | % | 1.29 | High-frequency infrared carbon sulfur instrument | |
| Specific surface area | M2/g | 12.21 | ST-08 SSA TESTING | |
| PH | N.A | 8.92 | PH tester | |
| Moisture | PPM | 1043.0 | Karl-Fisher Moisture analyzer | |
| First discharge efficiency | % | 97.5 | Half cell | |
| First capacity | mAh/g | 155.5 | ||
Product Detail

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