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High performance electrochemical capacitor materials focusing on nickel based materials

Inorganic Chemistry Frontiers, ISSN: 2052-1553, Vol: 3, Issue: 2, Page: 175-202
2016
  • 301
    Citations
  • 0
    Usage
  • 181
    Captures
  • 1
    Mentions
  • 0
    Social Media
Metric Options:   Counts1 Year3 Year

Metrics Details

  • Citations
    301
    • Citation Indexes
      301
  • Captures
    181
  • Mentions
    1
    • Blog Mentions
      1
      • 1

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2017 高被引中国作者 (3)

为彰显中国作者对国际化学研究领域的突出贡献,英国皇家化学会对旗下四十多本期刊发表论文的引用情况进行统计,将 2015、2016 年发表的论文在 2017 年的被引次数在全球排名前 1% 的名单进行筛选,整理出了通讯作者来自于中国科研院所的作者名单。 本期推送为该系列第三辑,列出了英国皇家化学会「Analytical, Biological, Environmental, Inorganic, Organic, Physical」类期刊上的全球前 1% 中国作者的论文。 论文与作者列表 排名不分先后;以英文名为准,中文名供参考。 Analyst The home of premier fundamental discoveries, inventions and applications in the analytical and bioanalytical sciences 化学分析和生物

Review Description

Of the two major capacitances contributing to electrochemical storage devices, pseudo-capacitance, which results from the reversible faradaic reactions, can be much higher than the electric double layer capacitance. Transition metal compounds are emerging electrode materials for pseudo-capacitors due to their multiple oxidation states and different ions. As one of the most well-known electroactive inorganic materials, nickel based materials are being developed for this purpose. Nickel based materials have been intensively investigated and evaluated as potential electrode materials for pseudo-capacitors due to their thermal stability and chemical stability, high theoretical specific capacity, low price and environment friendliness. A variety of synthetic methods such as hydrothermal/solvothermal methods, sol-gel, electrodeposition, and the spray deposition method have been successfully applied to prepare nickel based compounds and composite materials. In this review, comprehensive summaries and evaluations have been given to show the recent progress. And we introduce the nickel based compounds and composites electrode materials for supercapacitors via synthesis methods, the electrochemical performances of the electrode materials and the devices.

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