Understanding Mn-based intercalation cathodes from thermodynamics and kinetics

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Abstract

A series of Mn-based intercalation compounds have been applied as the cathode materials of Li-ion batteries, such as LiMn2O4, LiNi1−x−yCoxMnyO2, etc. With open structures, intercalation compounds exhibit a wide variety of thermodynamic and kinetic properties depending on their crystal structures, host chemistries, etc. Understanding these materials from thermodynamic and kinetic points of view can facilitate the exploration of cathodes with better electrochemical performances. This article reviews the current available thermodynamic and kinetic knowledge on Mn-based intercalation compounds, including the thermal stability, structural intrinsic features, involved redox couples, phase transformations as well as the electrical and ionic conductivity.

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Xie, Y., Jin, Y., & Xiang, L. (2017, July 13). Understanding Mn-based intercalation cathodes from thermodynamics and kinetics. Crystals. MDPI AG. https://doi.org/10.3390/cryst7070221

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