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Updated: May 21, 2025

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-化物双原子协同调节接口涂层使稳定的Zn-金属阳极成为可能
Chenglong Liu1, Tian Liu2, Ruiqi Liu1
1National Synchrotron Radiation Laboratory, University of Science and Technology of China, Hefei, Anhui, 230029, China.
研究人员为水性阳极开发了一种-二原子调节的固体电解质介相 (ZnBOF). 这一策略抑制了树突形成和副作用反应,使下一代可充电电池能够稳定循环运行.
科学领域:
- 材料科学 材料科学 材料科学
- 电化学 电化学 电化学
- 储能 储能 储能 储能 储能 储能
背景情况:
- 水性基电池为可充电储能提供了一个可持续的替代方案.
- 阳极的挑战包括树石的形成,腐蚀和演化反应 (HER).
研究的目的:
- 在阳极上构建稳定的固体电解质介相 (SEI) 的策略.
- 为了减轻与水性电解质中的阳极相关的常见问题.
主要方法:
- 一个新的-二原子调节SEI (ZnBOF) 在Zn阳极上自发构建.
- 涉及蚀刻过程,以形成B化合物涂层,然后在现场进行F替代.
- 使用X射线吸收光谱和电化学性能评估进行表征.
主要成果:
- 该ZnBOF/Zn阳极在 (002) 平面上显示出优先的Zn2+沉积,防止了树的生长.
- 抑制副作用,包括副产品和HER的形成.
- 超稳定的 Zn 涂层/脱落在 2 mA cm-2.2 的 5000 小时内.
- 组装的ZnBOF/Zn下载的MnO2电池在1.0 A g-1的1700个循环后保持了96.2%的容量.
结论:
- -化物双原子调节的SEI战略有效地稳定了阳极.
- 促进Zn2+的运输,并减轻与水有关的副作用.
- 促进了高性能水性基电池的发展.
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