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Modulation of dendritic patterns during electrodeposition: A nonlinear phase-field model

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TitleModulation of dendritic patterns during electrodeposition: A nonlinear phase-field model
Publication TypeJournal Article
Year of Publication2015
AuthorsChen, L, Zhang, HWei, Liang, LYun, Liu, Z, Qi, Y, Lu, P, Chen, J, Chen, LQing
JournalJournal of Power Sources
Volume300
Start Page376
Pagination376–385
Date Published12/2015
ISSN0378-7753
KeywordsDendrite, Electrodeposition, Lithium-ion battery, Phase-field model
Abstract

A nonlinear phase-field model, accounting for the Butler-Volmer electrochemical reaction kinetics, is developed to investigate the dendritic patterns during an electrodeposition process. Using lithium electrodeposition as an example, the proposed model is first verified by comparison with the Nernst equation in a 1D equilibrium system. The nonlinear electrochemical kinetics is also confirmed at non-equilibrium condition. The dendritic patterns are examined as a function of applied voltage and initial electrode surface morphology. A design map is proposed to tailor the electrode surface morphology and the applied voltage to avoid undesired dendritic patterns.

DOI10.1016/j.jpowsour.2015.09.055