💡 Approaches to Enhance LMFP Conductivity

Lithium manganese iron phosphate (LMFP) is gaining attention as a safer, cost-effective, and high-voltage cathode material. However, one of its key challenges is relatively low electronic conductivity.
Two promising strategies are making progress in addressing this issue:
🔹 Reducing particle size – Decreasing LMFP primary particle size shortens the Li-ion diffusion path, enabling faster charge/discharge kinetics.
🔹 Metal doping – Introducing metal dopants into the LMFP structure enhances conductivity and improves overall electrochemical performance.
By combining these approaches, we can deliver LMFP with improved conductivity, higher power density, and longer cycle life—positioning it as a competitive option for next-generation lithium-ion batteries.
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