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Tailoring the Morphology of Cu2O Microcrystals in Cu2O/rGO Composites for Achieving Enhanced Supercapacitor Performance

  • Hsin Lin Hsieh
  • , Yi Hsiu Wang
  • , Chun Yu Tsai
  • , Chao Hsuan Yang
  • , En Jing Lin
  • , Chiao Chen Chen

研究成果: Article同行評審

29   連結會在新分頁中打開 引文 斯高帕斯(Scopus)

摘要

Cuprous oxide/reduced graphene oxide (rGO) composites have attracted considerable attention for energy applications because of the high theoretical specific capacitance of Cu2O and the decent electrical conductivity of rGO. Moreover, Cu2O crystals have intriguing facet-dependent electrical and photocatalytic properties. Although some studies have explored the facet-dependent photocatalytic activity of Cu2O crystals, limited research has investigated the use of Cu2O with tunable crystal shapes in supercapacitor applications. In this study, we present a facile one-step hydrothermal process for preparing Cu2O-based rGO composites under alkaline conditions without additional reducing agents. By adjusting the synthesis parameters, we obtained Cu2O/rGO composites containing cubic, truncated cubic, concave octahedral, and octahedral Cu2O crystals. Comprehensive electrochemical analyses demonstrated that these composites displayed noticeable pseudocapacitive properties. Among them, the O-Cu2O/rGO composite with octahedral Cu2O crystals exhibited the highest specific capacitance (525 F/g at 1 A/g) and decent electrochemical stability. This superior pseudocapacitive performance is attributed to the high conductivity and low charge transfer resistance of Cu2O octahedrons as well as the favorable interfacial contact between negatively charged rGO and the positively charged {111} facets of Cu2O octahedrons. Our findings provide valuable insights for designing other promising metal oxide/rGO composites for supercapacitor applications.

原文English
頁(從 - 到)8869-8881
頁數13
期刊ACS Applied Energy Materials
7
發行號19
DOIs
出版狀態Published - 2024 10月 14

All Science Journal Classification (ASJC) codes

  • 化學工程(雜項)
  • 能源工程與電力技術
  • 電化學
  • 材料化學
  • 電氣與電子工程

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