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Controllable synthesis of hollow spherical nickel chalcogenide (NiS2and NiSe2) decorated with graphene for efficient supercapacitor electrodes

  • Min Lu*
  • , Ming Yuan Sun
  • , Xiao Hui Guan
  • , Xue Mei Chen
  • , Guang Sheng Wang
  • *此作品的通讯作者
  • Northeast Electric Power University

科研成果: 期刊稿件文章同行评审

摘要

New carbon-loaded nickel chalcogenide electrode materials (NiS2/GO and NiSe2/rGO) have been synthesized through an easy-to-operate process: NiSe2was obtained based on NiS2hollow spheres, and was successfully synthesized withl-cysteine assistance under the hydrothermal method at 120 °C. GO of different mass fraction was added together withl-cysteine. The electrochemical performance of NiS2/GO and NiSe2/rGO has been greatly improved because the formation of a carbon-loaded layer effectively increased the specific surface area and reduced the charge transport resistance. Compared with pure NiS2and NiSe2, NiS2/GO and NiSe2/rGO presented much better specific capacitance (1020 F g−1and 722 F g−1respectively at a current density of 1 A g−1) and more superior rate capability (when the current density was raised to 5 A g−1the specific capacitance remained at 569 F g−1and 302 F g−1). This work highlights the advantages of nickel compounds through a very simple experimental method, and contributes to providing a good reference for preparation of superior supercapacitor materials with high performance.

源语言英语
页(从-至)11786-11792
页数7
期刊RSC Advances
11
20
DOI
出版状态已出版 - 23 3月 2021

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