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Underpotential lithium plating on graphite anodes caused by temperature heterogeneity

delete2020-11-09
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OA
AI
H
Hansen Wang
Y
Yangying Zhu
S
Sang Cheol Kim
A
Allen Pei
李彦斌 (Yanbin Li)
D
David Boyle
H
Hongxia Wang
Z
Zewen Zhang
叶玉胜 cover
叶玉胜 (Yusheng Ye)
W
William Huang
Y
Yayuan Liu
J
Jinwei Xu
李骏 (Jun Li)
刘芳 (Fang Liu)
Y
Yi Cui *
DOI:10.1073/pnas.2009221117delete
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Abstract

Abstract

En 中文
Rechargeability and operational safety of commercial lithium (Li) ion batteries demand further improvement. Plating of metallic Li on graphite anodes is a critical reason for Li-ion battery capacity decay and short circuit. It is generally believed that Li plating is caused by the slow kinetics of graphite intercalation, but in this paper, we demonstrate that thermodynamics also serves a crucial role. We show that a nonuniform temperature distribution within the battery can make local plating of Li above 0 V vs. Li-0/Li* (room temperature) thermodynamically favorable. This phenomenon is caused by temperature-dependent shifts of the equilibrium potential of Li-0/Li*. Supported by simulation results, we confirm the likelihood of this failure mechanism during commercial Li-ion battery operation, including both slow and fast charging conditions. This work furthers the understanding of nonuniform Li plating and will inspire future studies to prolong the cycling lifetime of Li-ion batteries.
Keywords:
extreme fast charging
Li plating
temperature heterogeneity
equilibrium potential
thermodynamics
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Journal

P
Proceedings of the National Academy of Sciences of the United States of America
IF:
9.1
Papers:
10.8W
Citations:
73.5W

Organization

S
Stanford University
Scholars:
9.6W
Papers: 8.2W
Citations: 17.0W