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通过在石墨中进行素转换-插入化学方法实现的水性离子电池
Chongyin Yang1, Ji Chen1, Xiao Ji1
1Department of Chemical and Biomolecular Engineering, University of Maryland, College Park, MD, USA.
Nature
|May 10, 2019
概括
研究人员使用石墨中的转换-插曲化学方法开发了一种新型的水性离子电池. 这一突破实现了高容量和能量密度,并将安全性与先进的储能解决方案的良好可逆性相结合.
科学领域:
- 电化学
- 材料科学
- 能量储存
背景情况:
- 水性离子电池 (ALIB) 提供了更高的安全性,但由于能量密度低而受到限制.
- 盐水中的电解质将ALIB的电化学窗口扩展到3-4伏.
- 目前的ALIBs在过渡金属氧化物阴极中具有较低的间隔容量.
研究的目的:
- 为ALIBs开发一个高容量的正极材料.
- 在水性离子电池中实现更高的能量密度.
- 探索超越传统的电化学机制.
主要方法:
- 在石墨中研究过素转换-间隔化学.
- 合成和表征一个复合电极材料 (C3.5[Br0.5Cl0.5]).
- 组装并测试了带有被动化石墨阳极的4伏级水性离子全电池.
主要成果:
- 在4.2V与Li/Li+相比,复合电极的特定容量为243 mAh/g.
- 在水- bisalt电解质中证明了可逆的I阶段石墨间化合物形成.
- 整个电池的能量密度为460Wh/kg,库伦比效率为100%.
结论:
- 新的离子转换间隔机制显著提高了ALIB的能量密度.
- 这种方法结合了高能量转换反应和间隔可逆性.
- 开发的系统为高性能水性储能提供了更安全的替代方案.
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