Description
Model: LMFP64
Composition: LiMn0.6Fe0.4PO4
Advantages of Lithium Manganese Iron Phosphate (LMFP) as a Cathode Material
| Parameter | Unit | LMFP64 |
|---|---|---|
| PSD/μm | D10 | 0.271 |
| D50 | 1.025 | |
| D90 | 12.103 | |
| Dmax | 24.548 | |
| BET | ㎡/g | 18.60 |
| H2O | ppm | 320.5 |
| PD | g/cm³ | 2.25 |
| C | % | 1.74 |
| PH | / | 9.13 |
| (Li) | % | 4.47 |
| (Mn) | % | 19.60 |
| (Fe) | % | 13.63 |
| (P) | % | 19.14 |
| 0.2C-Discharge | mAh/g | 152.6 |
| 0,2C-Eff. | % | 95.5 |
FAQ
1、What is the advantage of Lithium Manganese Iron Phosphate (LMFP)?
Lithium Manganese Iron Phosphate (LMFP) excels in that it successfully combines the high safety, long cycle life, and low cost of Lithium Iron Phosphate (LFP) with the high energy density of ternary materials, striking an optimal balance or “golden mean.”
2、What are the applications of Lithium Manganese Iron Phosphate?
Commercialized through two main strategies, LMFP is blended with ternary materials to create safer, more affordable high-performance batteries, and deployed independently as a direct, superior upgrade to LFP, enabling longer-range EVs and more compact energy storage solutions without compromising safety.
3、What are the formulations for Lithium Manganese Iron Phosphate (LMFP) cathode slurry?
Pure LMFP cathode system
| LMFP64 | Super P | CNT | PVDF |
| 96.00% | 1.00% | 0.50% | 2.50% |
LMFP-NCM composite cathode system
| NCM | LMFP64 | Super P | CNT | PVDF |
| 67.20% | 28.80% | 1.00% | 0.50% | 2.50% |
The second formulation is most popular formulation now.
4、What is the typical charge/discharge voltage window for testing LMFP coin cells?
From 4.5V to 2.5V.









