Using the adiabatic trajectory method, the migration energy barriers for the migration of
Li ions and Cr ions along the one-dimensional diffusion pathway in pure and Cr doped
LiFePO4
are obtained from first principles calculations. The results show that while Li ions can
diffuse along the diffusion pathway easily, Cr ions do not easily diffuse away from their
initial positions. This means that the heavy Cr ions will block the one-dimensional
diffusion pathway of the material. Monte Carlo simulations are performed to evaluate
the influences of the blocking behaviours on the electrochemical performance of
LiFePO4
cathode material for Li ion secondary batteries. The results show that the evaluated
capacity is highly sensitive to the amount of the dopant, the size of the super-cell being
used for simulation (particle size of the powder cathode material) and the Monte Carlo
steps for statistics (charge–discharge current density).
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