纳米片
插层(化学)
锰
阴极
电解质
电池(电)
材料科学
化学工程
相(物质)
无机化学
电极
水溶液
氧化物
纳米技术
化学
冶金
物理化学
有机化学
功率(物理)
工程类
物理
量子力学
作者
Qinghe Zhao,Xin Chen,Ziqi Wang,Luyi Yang,Runzhi Qin,Jinlong Yang,Yongli Song,Shouxiang Ding,Mouyi Weng,Weiyuan Huang,Jiajie Liu,Wenguang Zhao,Guoyu Qian,Kai Yang,Yan-Hui Cui,Haibiao Chen,Feng Pan
出处
期刊:Small
[Wiley]
日期:2019-10-07
卷期号:15 (47)
被引量:158
标识
DOI:10.1002/smll.201904545
摘要
Abstract Aqueous Zn‐MnO 2 batteries using mild electrolyte show great potential in large‐scale energy storage (LSES) application, due to high safety and low cost. However, structure collapse of manganese oxides upon cycling caused by the conversion mechanism (e.g., from tunnel to layer structures for α‐, β‐, and γ‐phases) is one of the most urgent issues plaguing its practical applications. Herein, to avoid the phase conversion issue and enhance battery performance, a structurally robust novel phase of manganese oxide MnO 2 H 0.16 (H 2 O) 0.27 (MON) nanosheet with thickness of ≈2.5 nm is designed and synthesized as a promising cathode material, in which a nanosheet structure combined with a novel H + /Zn 2+ synergistic intercalation mechanism is demonstrated and evidenced. Accordingly, a high‐performance Zn/MON cell is achieved, showing a high energy density of ≈228.5 Wh kg −1 , impressive cyclability with capacity retention of 96% at 0.5 C after 300 cycles, as well as exhibiting rate performance of 115.1 mAh g −1 at current rate of 10 C. To the best current knowledge, this H + /Zn 2+ synergistic intercalation mechanism is first reported in an aqueous battery system, which opens a new opportunity for development of high‐performance aqueous Zn ion batteries for LSES.
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