解开Sb和Bi极的不同储能性能的秘密
Shengfang Liu1, Hongyan Xu1, Xiangpan Tang1
1Hunan Provincial Key Laboratory of Chemical Power Sources, College of Chemistry and Chemical Engineering, Central South University, Changsha, 410083, P.R. China.
Angewandte Chemie (International ed. in English)
|December 19, 2025
概括
由 (Sb) 和 (Bi) 制成的离子电池阳极显示出由于Na+离子流动性的性能差异. 木阳极表现出优越的速率能力和循环稳定性,因为一个独特的相位过渡机制.
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:
- 合金类型的阳极材料对于高容量的离子电池 (SIB) 是至关重要的.
- 了解这些阳极中调节速率能力和稳定的机制至关重要.
- (Sb) 和 (Bi) 是VA组元素,具有类似的合金组成.
研究的目的:
- 系统地比较SIB中Sb和Bi阳极的电化学性能.
- 阐明导致绩效差异的潜在机制.
- 为设计先进的合金基阳极提供见解.
主要方法:
- 系统的电化学性能比较Sb和Bi阳极.
- 对相变动动力学和Na+扩散机制的分析.
- 评估速度能力和长期循环稳定性的评估.
主要成果:
- 在Sb合金中介产品中,Na+的"阻塞效应"阻碍了动力学并导致降解.
- 双阳极表现出连续的相位过渡,使得Na+迅速扩散和均的SEI形成.
- 双阳极提供高容量 (325.1mAhg-1在155.8C) 和优秀的稳定性 (323mAhg-1在2500个周期后在2Ag-1).
结论:
- 双阳极的相位过渡机制是它们在SIB中的卓越性能的关键.
- 在Sb阳极中的"封锁效应"限制了它们对高性能SIB的应用.
- 这项研究为开发下一代金属离子电池合金阳极提供了宝贵的见解.
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