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基于芯片的老化层状阴极结构热不稳定性的透射电子显微镜研究

Chip-based TEM investigation of structural thermal instability in aged layered cathode.

作者信息

Wang Yuhan, Yuan Yuan, Liao Xiaobin, Van Tendeloo Gustaaf, Zhao Yan, Sun Congli

机构信息

State Key Laboratory of Advanced Technology for Materials Synthesis and Processing, International School of Materials Science and Engineering, Wuhan University of Technology Wuhan 430070 China

Hongqi Integrated Circuit (Zhuhai) Co., Ltd China

出版信息

Nanoscale Adv. 2023 Jul 14;5(16):4182-4190. doi: 10.1039/d3na00201b. eCollection 2023 Aug 8.

Abstract

Thermally induced oxygen release is an intrinsic structural instability in layered cathodes, which causes thermal runaway issues and becomes increasingly critical with the continuous improvement in energy density. Furthermore, thermal runaway events always occur in electrochemically aged cathodes, where the coupling of the thermal and electrochemical effect remains elusive. Herein, we report the anomalous segregation of cobalt metal in an aged LiCoO cathode, which is attributed to the local exposure of the high-energy (100) surface of LiCoO and weak interface Co-O dangling bonds significantly promoting the diffusion of Co. The presence of the LCO-Co interface severely aggregated the oxygen release in the form of dramatic Co growth. A unique particle-to-particle oxygen release pathway was also found, starting from the isolated high reduction areas induced by the cycling heterogeneity. This study provides atomistic insight into the robust coupling between the intrinsic structural instability and electrochemical cycling.

摘要

热诱导氧释放是层状阴极中一种内在的结构不稳定性,它会引发热失控问题,并且随着能量密度的不断提高而变得越来越关键。此外,热失控事件总是发生在经过电化学老化的阴极中,而热和电化学效应的耦合仍然难以捉摸。在此,我们报道了老化的LiCoO阴极中钴金属的异常偏析,这归因于LiCoO高能(100)表面的局部暴露以及弱界面Co-O悬键显著促进了Co的扩散。LCO-Co界面的存在严重聚集了以显著的Co生长形式出现的氧释放。还发现了一种独特的颗粒间氧释放途径,该途径始于由循环不均匀性引起的孤立高还原区域。这项研究为内在结构不稳定性与电化学循环之间的强耦合提供了原子层面的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a9f1/10408578/9d1a782b06e6/d3na00201b-f1.jpg

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