Authors
Jun Chen, Wentao Deng, Xu Gao, Shouyi Yin, Li Yang, Huanqing Liu, Guoqiang Zou, Hongshuai Hou, Xiaobo Ji
Publication date
2021/4/1
Journal
ACS nano
Volume
15
Issue
4
Pages
6061-6104
Publisher
American Chemical Society
Description
The practical application of lithium-ion batteries suffers from low energy density and the struggle to satisfy the ever-growing requirements of the energy-storage Internet. Therefore, developing next-generation electrode materials with high energy density is of the utmost significance. There are high expectations with respect to the development of lattice oxygen redox (LOR)—a promising strategy for developing cathode materials as it renders nearly a doubling of the specific capacity. However, challenges have been put forward toward the deep-seated origins of the LOR reaction and if its whole potential could be effectively realized in practical application. In the following Review, the intrinsic science that induces the LOR activity and crystal structure evolution are extensively discussed. Moreover, a variety of characterization techniques for investigating these behaviors are presented. Furthermore, we have highlighted …
Total citations
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