取决于温度的相间形成和金属电池中的+运输
Suting Weng1,2, Xiao Zhang1,3, Gaojing Yang1,2
1Beijing National Laboratory for Condensed Matter Physics, Institute of Physics, Chinese Academy of Sciences, Beijing, 100190, China.
Nature communications
|July 25, 2023
概括
低温电池的性能受到通过固体电解质接口 (SEI) 缓慢的离子传输的限制. 开发富含无机物质的SEI层增强了离子动力学和电池热力学,以便在寒冷天气中更好地运行.
科学领域:
- 电化学 电化学 电化学
- 材料科学 材料科学 材料科学
背景情况:
- 高性能离子/金属电池对于低温 (<-20°C) 应用至关重要.
- 缓慢的离子 (Li+) 运输和充电转移动力学阻碍了低温电池的性能.
研究的目的:
- 为了研究在涂层过程中取决于温度的Li+行为.
- 为了确定在低温下Li+运输的速度决定性步骤.
- 制定提高低温电池性能的策略.
主要方法:
- 使用各种表征技术,分析温度依赖的Li+行为.
- 在低温下分析电解质分解路径和SEI层形成.
- 调整使用化电解质的电解质溶解结构 (MTFA:FEC中的LiFSI).
主要成果:
- 通过SEI层的Li+扩散是低温下关键的速度限制步骤.
- 低温导致有机丰富,转移稳定的SEI层不适合有效的Li+运输.
- 化电解质促进无机丰富的SEI层的形成,具有更好的耐温性和Li+运输.
结论:
- 在低温下Li+运输的动力瓶在SEI层内被确定.
- 构建富含无机的介面相是一种可行的策略,可以增强反应动力学和热力学.
- 该研究为开发先进的电解质和介面相提供了洞察力,以提高低温电池性能.
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