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Surfactant-assisted synthesis of belt- and urchin-shaped copper oxide/ hydroxide nanostructures with supercapacitor performance

Authors
Jang, Hye SeongKim, Min KyeongLee, DohunSon, ByeongseoYang, SeungminLee, HeejunBang, JoonhoHong, JohnRyu, Gyeong Hee
Issue Date
Apr-2026
Publisher
Pergamon Press Ltd.
Keywords
Copper hydroxide; Copper oxide; Nanostructure; Supercapacitor
Citation
Journal of Physics and Chemistry of Solids, v.211
Indexed
SCIE
SCOPUS
Journal Title
Journal of Physics and Chemistry of Solids
Volume
211
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/81569
DOI
10.1016/j.jpcs.2025.113419
ISSN
0022-3697
1879-2553
Abstract
Nanoscale structures have attracted considerable interest owing to their high surface-to-volume ratios and unique chemical and physical properties. Various methods have been developed to synthesize two-dimensional and nanoscale structures, with surfactant-assisted approaches being particularly effective for forming nanoscale structures at water interfaces. In this study, a surfactant-assisted method is developed for synthesizing CuxO/Cu (OH)2 nanostructures with belt and urchin morphologies. The two distinct nanostructures are characterized using atomic force microscopy, and the mechanisms governing their formation are elucidated. From an electrochemical perspective, these structures exhibit enhanced supercapacitor performance because of the improved contact with electrolytes. Further, supercapacitor performance tests highlighted the potential of specimens for various electronic applications. The findings of this study demonstrate the potential applicability of these nanostructures in electrochemical catalyst, batteries, and supercapacitors.
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