EN

Z.H. Ren, X.Y. Shi*, Z.-S. Wu*

Next Energy, 2023, 1.

DOI: 10.1016/j.nxener.2023.100068 [PDF]

发布时间:2023-10-07    栏目名称:2023

Z.H. Ren, X.Y. Shi*, Z.-S. Wu*

Next Energy, 2023, 1.

DOI: 10.1016/j.nxener.2023.100068 [PDF]

Aqueous rechargeable lithium-ion batteries (ARLBs) have attracted widespread attention due to the inherent merits of low cost, high safety, and environmental friendliness in comparison to their nonaqueous counterparts. However, the limited electrochemical stability window (ESW) of aqueous electrolytes near 1.23 V greatly restricts the selection of electrode materials and improvement of energy density of ARLBs. In the early stage, most works primarily focused on the modification of electrode materials with operating voltages in the narrow ESW range to enhance the cyclability. After the“water-in-salt” electrolyte came out, various approaches have been devised to continually widen ESW of aqueous electrolytes and increase the energy density of ARLBs. Herein, we overview the historical development and recent advancements of ARLBs, focusing on the aspects of the electrode materials (modification strategies of cathode and anode) and the novel electrolytes (e.g., water-in-salt electrolytes, water-in-bisalt electrolytes, hydrate-melt electrolytes, hybrid aqueous/non-aqueous electrolytes, gel electrolytes) in detail. Finally, the existing key issues and future prospects are also presented for the next-generation ARLBs.


中国科学院大连化学物理研究所

大连市中山路457号

邮编:116023

版权所有 © 二维材料化学与能源应用研究组

首页 / 组长简介 / 研究方向 / 研究组成员 / 发表论文 / 新闻 / 联系我们