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A Phase Field Model of Solid Electrolyte Interface Formation in Lithium-ion Batteries

  • Jie Deng (a1), Gregory J. Wagner (a1) and Richard P. Muller (a2)

Abstract

A phase field model is developed to investigate the formation of a solid electrolyte interface layer on the anode surface in lithium-ion batteries. Numerical results show that the growth of solid electrolyte interface exhibits power-law scaling with respect to time, and the growth rate depends on various factors such as temperature, diffusivity of electrons, and rates of electrochemical reactions.

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A Phase Field Model of Solid Electrolyte Interface Formation in Lithium-ion Batteries

  • Jie Deng (a1), Gregory J. Wagner (a1) and Richard P. Muller (a2)

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