材料科学
阴极
阳极
电池(电)
电解质
储能
化学工程
高压
电流密度
锌
电压
能量密度
电化学
电极
离子
水溶液
电气工程
冶金
工程物理
化学
功率(物理)
物理
有机化学
物理化学
量子力学
工程类
作者
Ping Hu,Mengyu Yan,Ting Zhu,Xuanpeng Wang,Xiujuan Wei,Jiantao Li,Liang Zhou,Zhaohuai Li,Lineng Chen,Liqiang Mai
标识
DOI:10.1021/acsami.7b13110
摘要
Aqueous zinc-ion batteries attract increasing attention due to their low cost, high safety, and potential application in stationary energy storage. However, the simultaneous realization of high cycling stability and high energy density remains a major challenge. To tackle the above-mentioned challenge, we develop a novel Zn/V2O5 rechargeable aqueous hybrid-ion battery system by using porous V2O5 as the cathode and metallic zinc as the anode. The V2O5 cathode delivers a high discharge capacity of 238 mAh g–1 at 50 mA g–1. 80% of the initial discharge capacity can be retained after 2000 cycles at a high current density of 2000 mA g–1. Meanwhile, the application of a “water-in-salt” electrolyte results in the increase of discharge platform from 0.6 to 1.0 V. This work provides an effective strategy to simultaneously enhance the energy density and cycling stability of aqueous zinc ion-based batteries.
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