A simple and mass production preferred solid-state procedure to prepare the LiSixMgxMn2∿xO4 (0≤x≿.10) with enhanced cycling stability and rate capability
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文摘

LiSixMgxMn2−2xO4 samples were firstly prepared via a simple and mass production preferred solid-state procedure.

Si–Mg co-doping led to the decrease of crystal lattice constant and more stable spinel structure.

LiSi0.05Mg0.05Mn1.90O4 sample exhibited enhanced cycling stability and rate capability.

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