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Electrodeposition of a dendrite-free 3D Al anode for improving cycling of an aluminum-graphite battery 被引量:1

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摘要 Aluminum-metal batteries show great potential as next-generation energy storage due to their abundant resources and intrinsic safety.However,the crucial limitations of metallic Al anodes,such as dendrite and corrosion problems in conventional aluminum-metal batteries,remain challenging and elusive.Here,we report a novel electrodeposition strategy to prepare an optimized 3D Al anode on carbon cloth with an uniform deposition morphology,low local current density,and mitigatory volume change.The symmetrical cells with the 3D Al anode show superior stable cycling(>450 h)and low-voltage hysteresis(~170 mV)at 0.5 mA cm^(−2).High reversibility(~99.7%)is achieved for the Al plating/stripping.The graphite||Al‐4/CC full batteries show a long lifespan of 800 cycles with 54 mAh g^(−1) capacity at a high current density of 1000 mA g^(−1),benefiting from the high capacitive-controlled distribution.This study proposes a novel strategy to design 3D Al anodes for metallic-Al-based batteries by eliminating the problems of planar Al anodes and realizing the potential applications of aluminum-graphite batteries.
出处 《Carbon Energy》 SCIE CAS 2022年第2期155-169,共15页 碳能源(英文)
基金 This study was funded by the Science and Technology Development Fund,Macao SAR(File no.0191/2017/A3,0041/2019/A1,0046/2019/AFJ,0021/2019/AIR) the University of Macao(File no.MYRG2017-00216-FST and MYRG2018-00192-IAPME) the UEA funding,Science and Technology Program of Guangzhou(2019050001) the National Key Research and Development Program of China(2019YFE0198000) Fuming Chen acknowledges the Pearl River Talent Program(2019QN01L951).
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