在离子电池的多层氧化物中引发的质子交换反应性
Panpan Xu1,2, Xingyu Guo3,4, Binglei Jiao2,5
1Aiiso Yufeng Li Family Department of Chemical and Nano Engineering, University of California, San Diego, La Jolla, CA, 92093, USA.
Nature communications
|November 13, 2024
概括
质子降解离子电池材料,如NCM,通过出和破坏结构的稳定性,特别是高含量. 化策略可以在具有挑战性的制造环境中解决这些缺陷.
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
- 固态化学 固态化学
背景情况:
- ,,,氧化物 (NCM) 是离子电池的重要阴极材料.
- NCM对水分的敏感性使制造,储存和回收过程复杂化.
- 质子与离子交换在NCM稳定性和性能中的作用尚未完全理解.
研究的目的:
- 阐明NCM中质子间隔的机制.
- 了解质子化如何影响NCM结构和稳定性.
- 研究解决由质子化引起的缺乏症的方法.
主要方法:
- 先进的表征技术. 先进的表征技术.
- 计算研究.
- 热力学和动力学研究.
- 材料特性和动力学建模.
主要成果:
- 质子间隙导致泄漏和质子NCM的形成.
- 质子化会诱导阴离子重新排列和杂质相,降低结构稳定性.
- 更高的含量加剧了质子化的不良影响.
- 缺乏症可以通过涉及Li+离子和受控质子度的溶液过程来弥补.
结论:
- 质突显著影响NCM的结构完整性和性能,特别是在高变体中.
- 了解质子行为是缓解NCM在处理过程中的缺陷的关键.
- 一个重新化策略为解决NCM材料中的缺陷提供了一个可行的解决方案.
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