Flexible high energy density zinc-ion batteries enabled by binder-free MnO2/reduced graphene oxide electrode

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作者
Yuan Huang
Jiuwei Liu
Qiyao Huang
Zijian Zheng
Pritesh Hiralal
Fulin Zheng
Dilek Ozgit
Sikai Su
Shuming Chen
Ping-Heng Tan
Shengdong Zhang
Hang Zhou
机构
[1] Peking University,Shenzhen Key Lab of Thin Film Transistor and Advanced Display, Peking University Shenzhen Graduate School
[2] The Hong Kong Polytechnic University,Laboratory for Advanced Interfacial Materials and Devices, Institute of Textiles and Clothing
[3] Future Business Centre,Zinergy UK Ltd.
[4] Southern University of Science and Technology,Department of Electrical and Electronic Engineering
[5] Chinese Academy of Sciences,State Key Laboratory of Super lattices and Microstructures, Institute of Semiconductors
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摘要
We demonstrate a rechargeable zinc-ion battery with high energy density and cyclability using MnO2 and reduced graphene oxide (MnO2/rGO) electrode. The flexible and binder free electrode, with high MnO2 mass ratio (80 wt% of MnO2), is fabricated using vacuum filtration without any additional additives other than rGO. Compared to batteries with conventional MnO2 electrodes, the Zn–MnO2/rGO battery shows a significant enhanced capacity (332.2 mAh g-1 at 0.3 A g-1), improved rate capability (172.3 mAh g-1 at 6 A g-1) and cyclability. The capacity retention remains 96% after 500 charge/discharge cycles at 6 A g-1. The high MnO2 mass ratio makes MnO2/rGO electrode advantageous when the capacity is normalized to the whole electrode, particularly at high rates. The calculated gravimetric energy density of Zn–MnO2/rGO battery is 33.17 W h kg-1, which is comparable to the existing commercial lead-acid batteries (30–40 W h kg-1). Furthermore, the discharge profile and capacity of our Zn–MnO2/rGO battery shows no deterioration during bending test, indicating good flexibility. As a result, zinc-ion battery is believed to be a promising technology for powering next generation flexible electronics.
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