Hydrogel Electrolyte Enabled High‐Performance Flexible Aqueous Zinc Ion Energy Storage Systems toward Wearable Electronics

电解质 数码产品 储能 纳米技术 水溶液 离子 材料科学 可穿戴技术 可穿戴计算机 计算机科学 电化学储能 电化学 超级电容器 嵌入式系统 电气工程 冶金 工程类 化学 电极 有机化学 物理 功率(物理) 物理化学 量子力学
作者
Gao Weng,Xianzhong Yang,Zhiqi Wang,Xu Yan,Ruiyuan Liu
出处
期刊:Small [Wiley]
卷期号:19 (48): e2303949-e2303949 被引量:72
标识
DOI:10.1002/smll.202303949
摘要

To cater to the swift advance of flexible wearable electronics, there is growing demand for flexible energy storage system (ESS). Aqueous zinc ion energy storage systems (AZIESSs), characterizing safety and low cost, are competitive candidates for flexible energy storage. Hydrogels, as quasi-solid substances, are the appropriate and burgeoning electrolytes that enable high-performance flexible AZIESSs. However, challenges still remain in designing suitable and comprehensive hydrogel electrolyte, which provides flexible AZIESSs with high reversibility and versatility. Hence, the application of hydrogel electrolyte-based AZIESSs in wearable electronics is restricted. A thorough review is required for hydrogel electrolyte design to pave the way for high-performance flexible AZIESSs. This review delves into the engineering of desirable hydrogel electrolytes for flexible AZIESSs from the perspective of electrolyte designers. Detailed descriptions of hydrogel electrolytes in basic characteristics, Zn anode, and cathode stabilization effects as well as their functional properties are provided. Moreover, the application of hydrogel electrolyte-based flexible AZIESSs in wearable electronics is discussed, expecting to accelerate their strides toward lives. Finally, the corresponding challenges and future development trends are also presented, with the hope of inspiring readers.
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