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Stalling oxygen evolution in high-voltage cathodes by lanthurization

delete2023-01-12
delete106
PRE
AI
M
Mingzhi Cai
Y
Yanhao Dong
谢苗 cover
谢苗 (Miao Xie)
W
Wujie Dong
董辰龙 cover
董辰龙 (Chenlong Dong)
戴鹏 cover
戴鹏 (Peng Dai)
张辉 cover
张辉 (Hui Zhang)
王欣 cover
王欣 (Xin Wang)
X
Xuzhou Sun
S
Shaoning Zhang
M
Moonsu Yoon
H
Haowei Xu
Y
Yunsong Ge
李菊英 cover
李菊英 (Ju Li) *
黄富强 cover
黄富强 (Fuqiang Huang) *
DOI:10.1038/s41560-022-01179-3delete
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Abstract

Abstract

En 中文
Coatings and surface passivation are sought to protect high-energy-density cathodes in lithium-ion batteries, which suffer from labile oxygen loss and fast degradations. Here we develop the theory underlying the high-voltage-induced oxygen evolution crisis and report a lanthurizing process to regulate the near-surface structure of energy materials beyond conventional surface doping. Using LiCoO2 as an example and generalizing to Co-lean/free high-energy-density layered cathodes, we demonstrate effective surface passivation, suppressed surface degradation and improved electrochemical performance. High-voltage cycling stability has been greatly enhanced, up to 4.8 V versus Li+/Li, including in practical pouch-type full cells. The superior performance is rooted in the engineered surface architecture and the reliability of the synthesis method. The designed surface phase stalls oxygen evolution reaction at high voltages. It illustrates processing opportunities for surface engineering and coating by high-oxygen-activity passivation, selective chemical alloying and strain engineering using wet chemistry.
Keywords:
HIGH-CAPACITY
LICOO2
ORIGIN

Journal

Nature Energy cover
Nature Energy
IF:
60.1
Papers:
996
Citations:
5.6W

Organization

S
shanghai institute of ceramics, cas
Scholars:
2.8K
Papers: 2.6K
Citations: 14
T
Tianjin University of Technology
Scholars:
8.8K
Papers: 5.9K
Citations: 1.0W
P
peking university
Scholars:
11.8W
Papers: 8.7W
Citations: 146
X
xiamen university
Scholars:
5.8W
Papers: 3.8W
Citations: 67
C
chinese academy of sciences
Scholars:
56.5W
Papers: 44.9W
Citations: 704
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