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优化阳极/电解质接口的策略,以实现稳定的基于的电池
Jiechang Gao1, Yawen Xie1, Pan Zeng2
1Institute of Functional Nano and Soft Materials (FUNSOM), Jiangsu Key Laboratory for Carbon-Based Functional Materials and Devices, Soochow University, Suzhou, Jiangsu, 215123, China.
Small methods
|September 13, 2023
概括
水性可充电离子电池面临的挑战是由于树突和副产品的阳极效率. 本综述总结了稳定阳极-电解质接口的策略,从而提高电池寿命和性能.
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:
- 水性可充电离子电池 (ARZIB) 提供高安全性和低成本,但受到低效阳极的限制.
- 不良反应,如树突的形成和阳极/电解质接口的副产品生成导致低库伦比效率和快速容量衰减.
研究的目的:
- 为ARZIBs中稳定阳极-电解质接口的优化策略提供全面的概述.
- 系统地总结和分类各种方法及其基础机制,以提高阳极性能.
主要方法:
- 在ARZIB中对阳极的优化策略的文献综述和系统分类.
- 对代表性研究进行分析,以说明不同接口稳定技术的有效性和机制.
主要成果:
- 确定了阳极化学和接口不稳定的关键挑战.
- 详细介绍各种策略,包括保护层和电解质添加剂,以减轻树生长和副作用.
- 展示了这些策略如何提高库伦比克效率和骑自行车的稳定性.
结论:
- 稳定阳极-电解质接口对于ARZIBs的商业化至关重要.
- 对优化策略和机制的系统理解对于未来的开发是必要的.
- 未来的研究应该集中在准确的接口评估和新的策略,以进一步推进ARZIB技术.
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