The stable cycling of energy-dense solid-state batteries is highly relied on the kinetically stable solid-state Li alloying reactions. The Li metal precipitation at solid-solid interfaces is the primary cause of interface fluctuations and battery failures, whose formation requires a clear mechanism interpretation, especially on the key kinetic short board. Here, we introduce the lithium alloy anode as a model system to quantify the Li kinetic evolution and transition from the alloying reaction to the metal deposition in solid-state batteries, identifying that there is a carrier transition from Li atoms to Li vacancies during lithiation processes. The rate-determining step is charge transfer or Li atom diffusion at different lithiation stages.
The carrier transition from Li atoms to Li vacancies in solid-state lithium alloy anodes.
固态锂合金负极中载流子从锂原子向锂空位的转变
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作者:Lu Yang, Zhao Chen-Zi, Zhang Rui, Yuan Hong, Hou Li-Peng, Fu Zhong-Heng, Chen Xiang, Huang Jia-Qi, Zhang Qiang
| 期刊: | Science Advances | 影响因子: | 12.500 |
| 时间: | 2021 | 起止号: | 2021 Sep 17; 7(38):eabi5520 |
| doi: | 10.1126/sciadv.abi5520 | ||
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