Nanoscale Horiz., 2022, 7,1501-1512
DOI: 10.1039/D2NH00349J, Communication
DOI: 10.1039/D2NH00349J, Communication
Rui Pan, Anqi Zheng, Bing He, Yuwei Xiong, Fengsai Han, Lei Wei, Qingwen Li, Qichong Zhang, Kuibo Yin, Litao Sun
In situ anodic oxidation strategy is demonstrated to fabricate flexible long-life and high-capacity aqueous zinc-ion batteries adopting a 3D N-doped/defect-rich V2O5−x·nH2O nanosheets as fibrous cathodes and Zn nanosheets arrays as the anode.
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In situ anodic oxidation strategy is demonstrated to fabricate flexible long-life and high-capacity aqueous zinc-ion batteries adopting a 3D N-doped/defect-rich V2O5−x·nH2O nanosheets as fibrous cathodes and Zn nanosheets arrays as the anode.
The content of this RSS Feed (c) The Royal Society of Chemistry