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Cited 7 time in webofscience Cited 10 time in scopus
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Role of Li-Ion Depletion on Electrode Surface: Underlying Mechanism for Electrodeposition Behavior of Lithium Metal Anodeopen access

Authors
Xu, XieyuLiu, YangyangHwang, Jang-YeonKapitanova, Olesya O.Song, ZhongxiaoSun, Yang-KookMatic, AleksandarXiong, Shizhao
Issue Date
Nov-2020
Publisher
WILEY-V C H VERLAG GMBH
Keywords
depletion of Li-ions; electrodeposition; lithium metal anodes; mass-transfer; surface concentration
Citation
ADVANCED ENERGY MATERIALS, v.10, no.44, pp.1 - 10
Indexed
SCIE
SCOPUS
Journal Title
ADVANCED ENERGY MATERIALS
Volume
10
Number
44
Start Page
1
End Page
10
URI
https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/8856
DOI
10.1002/aenm.202002390
ISSN
1614-6832
Abstract
The application of lithium metal as an anode material for next generation high energy-density batteries has to overcome the major bottleneck that is the seemingly unavoidable growth of Li dendrites caused by non-uniform electrodeposition on the electrode surface. This problem must be addressed by clarifying the detailed mechanism. In this work the mass-transfer of Li-ions is investigated, a key process controlling the electrochemical reaction. By a phase field modeling approach, the Li-ion concentration and the electric fields are visualized to reveal the role of three key experimental parameters, operating temperature, Li-salt concentration in electrolyte, and applied current density, on the microstructure of deposited Li. It is shown that a rapid depletion of Li-ions on electrode surface, induced by, e.g., low operating temperature, diluted electrolyte and a high applied current density, is the underlying driving force for non-uniform electrodeposition of Li. Thus, a viable route to realize a dendrite-free Li plating process would be to mitigate the depletion of Li-ions on the electrode surface. The methodology and results in this work may boost the practical applicability of Li anodes in Li metal batteries and other battery systems using metal anodes.
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