2023
DOI: 10.1016/j.cej.2023.145289
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Flexible multi-layered porous CuxO/NiO (x = 1, 2) photo-assisted electrodes for hybrid supercapacitors: Design and mechanism insight

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Cited by 19 publications
(1 citation statement)
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“…In the presence of KOH, the aluminum foil components were easily etched, resulting in the formation of a layered porous structure on nickel–aluminum foils. Similarly, Zheng et al 49 designed Ni 35 Cu 15 Zr 15 Ti 35 metal glass ribbons as unalloyed precursors. Because of the different oxidation behaviors of Cu and Ni metals during dealloying and anodizing processes, NiO/Cu 2 O heterojunctions with a hierarchical porous structure were successfully synthesized and applied in photo-assisted supercapacitors, providing an area capacity of 1182.2 F cm −3 .…”
Section: Synthetic Strategies and Conversion Mechanismsmentioning
confidence: 99%
“…In the presence of KOH, the aluminum foil components were easily etched, resulting in the formation of a layered porous structure on nickel–aluminum foils. Similarly, Zheng et al 49 designed Ni 35 Cu 15 Zr 15 Ti 35 metal glass ribbons as unalloyed precursors. Because of the different oxidation behaviors of Cu and Ni metals during dealloying and anodizing processes, NiO/Cu 2 O heterojunctions with a hierarchical porous structure were successfully synthesized and applied in photo-assisted supercapacitors, providing an area capacity of 1182.2 F cm −3 .…”
Section: Synthetic Strategies and Conversion Mechanismsmentioning
confidence: 99%