Co/Mon为先进的硫电池加强了双边动力学调制
Yueyue Kong1, Lu Wang1, Muhammad Mamoor1
1Key Laboratory of Colloid and Interface Chemistry, Ministry of Education, School of Chemistry and Chemical Engineering, State Key Laboratory of Crystal Materials, Shandong University, Jinan, 250100, China.
这项研究引入了一种用于硫 (Li-S) 电池的新型Co/MoN复合分离器. 它有效地抑制了聚硫化物穿,并促进了统一的涂层,提高了电池性能和循环寿命.
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:
- -硫 (Li-S) 电池面临着缓慢的硫氧化还原动力学和树增长的挑战.
- 分离器修改提供了一种双重方法来缓解这些问题.
研究的目的:
- 设计和应用Co/MoN复合材料作为Li-S电池的分离器修饰器.
- 解决硫阴极和阳极的电化学动力学问题.
主要方法:
- 用于分离器装饰的Co/MoN复合材料的合理设计 (Co/MoN@PP).
- 对聚硫化物抑制和Li+流量增强的吸附催化功能的研究.
- 性能评估包括放电能力,衰变率和循环稳定性.
- 现场拉曼光谱和理论计算以证明动力学.
主要成果:
- Co/MoN@PP 分离器有效抑制了聚硫化物穿,并加速了电化学转化.
- 增强的Li+流量促进了统一的涂层和剥离.
- 实现高初始放电容量 (1570 mAh g-1 在0.2 C) 与低衰变率 (0.39%).
- 经过800小时以上的稳定循环运行,具有均的Li+运输和高面积容量 (4.62 mAh cm-2) 在高质量负载下.
结论:
- Co/MoN复合分离器为多功能微域提供了协同效应.
- 这一策略有效地解决了长周期Li-S电池的Li阳极和S阴极的问题.
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