法拉第效率
材料科学
阳极
电解质
水溶液
乙醚
电偶阳极
储能
乙醚
钾离子电池
锌
无机化学
化学工程
电极
有机化学
冶金
化学
阴极保护
功率(物理)
物理化学
工程类
物理
磷酸钒锂电池
量子力学
作者
Wei Xu,Kangning Zhao,Wangchen Huo,Yizhan Wang,Guang Yao,Xiao Gu,Hongwei Cheng,Liqiang Mai,Chenguo Hu,Xudong Wang
出处
期刊:Nano Energy
[Elsevier]
日期:2019-08-01
卷期号:62: 275-281
被引量:496
标识
DOI:10.1016/j.nanoen.2019.05.042
摘要
Aqueous rechargeable zinc ion batteries (ARZIBs) is considered one of the most compelling candidates for grid-scale energy storage owing to their cost effectiveness, good safety, eco-friendliness, high output voltage, and high capacity. However, their practical applications are still largely limited by the undesirable cyclability and high-rate capability. Here, we report a discovery that using a small amount (2 vol%) of diethyl ether (Et2O) as the electrolyte additive could largely improve the performance of Zn–MnO2 batteries. The addition of Et2O yielded the first cycle coulombic efficiency of 95.6% at 50 mA/g, a high capacity of 115.9 mAh/g at 5 A/g and 97.7% retention of initial capacity after 4000 cycles, demonstrating an outstanding rate capability and cycling performance among the reported Mn-based zinc ions batteries in mild electrolyte. Ex-situ characterizations revealed that appropriate amount of Et2O molecules could effectively suppress the formation of Zn dendrites on Zn anode, which is the main mechanism for cyclability improvements.
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