LFP Cathode Material – Lithium Iron Phosphate
Reliable LFP cathode material for lithium-ion battery production.
Widely used for EVs, residential storage, and scalable grid systems.
Durable and Safe Cathode Solution for Lithium-Ion Battery Systems
Lithium Iron Phosphate (LiFePO₄), commonly known as LFP, is a widely adopted cathode material for lithium-ion battery systems due to its excellent safety profile, thermal stability, and long cycle life. LFP-based batteries are used across numerous sectors, including electric vehicles, residential storage, and grid-scale energy storage systems.
NAGASE’s CFT-grade LFP is manufactured under high-quality standards, offering consistent particle size distribution, purity, and reliable electrochemical performance.
NAGASE supplies lithium iron phosphate (LFP) globally, enabling safe and scalable energy solutions for lithium-ion battery manufacturers – with full support and supply chain flexibility.
Applications
LFP cathode materials are widely used across several lithium-ion battery applications.
- Electric vehicles (EVs) requiring safe and long-life batteries
- Residential energy storage for homes and off-grid systems
- Grid-scale batteries for renewable energy integration
- Consumer electronics with stable power requirements
- Battery systems prioritizing thermal safety and longevity
Features
NAGASE LFP materials deliver stable performance, high safety, and long cycle durability for energy storage systems.
- Excellent thermal stability – Reduces fire risk and improves safety
- Long cycle life – Consistent performance over thousands of charge cycles
- High rate capability – Supports moderate-to-high discharge loads
- Manufactured in India – Reliable sourcing and production quality
- Global availability – Backed by NAGASE’s supply network and technical support






Product Specification
| # | Parameters | Values |
|---|---|---|
| 1 | Appearance | Black |
| 2 | D10 | 117 +/- 7 |
| D50 | 180 +/- 10 | |
| D90 | 285 +/- 30 | |
| 3 | Carbon (wt % range) | 2.7 +/- 0.2 |
| 4 | Surface Area (m²/g) | 28 +/- 2 |
| 5 | Top Density | 0.6 +/- 0.1 |
| 6 | pH Value | 8.3 +/- 0.5 |
| 7 | Moisture | <500 ppm |
| 8 | Sieve Residue | 0 %: 45 µm (450 ASTM) mesh |
| 9 | Specific capacity (mAh/g) @ C/10 | 154 +/- 5 |
| 10 | Specific capacity @ C5 rate | 152 +/- 5 |
| 11 | Specific capacity @ 1C rate | 144 +/- 5 |










