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Preparation and the Characterization of a Ferrocene Containing Main-Chain PEG-CNT Phase for Hybrid Supercapacitor Application

机译:用于混合超级电容器的含主链PEG-CNT的二茂铁的制备与表征

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摘要

With the rapid development of the global economy, the depletion of fossil fuels, and increasing environmental pollution, there is an urgent need for new technologies associated with energy conversion and storage. Supercapacitors have attracted tremendous attention and are now extensively used for energy storage. They charge and discharge quickly for high power demands but have low energy density. The goal of the research was to synthesize electrode and electrolyte materials for the fabrication of a hybrid supercapacitor cell with high energy density. In this hybrid cell, carbon nanotubes were used as electrodes, which contribute to electrostatic capacitance, and redox polymer was used as an electrolyte which accounts for redox or faradaic capacitance, thus increasing the energy density. For the reduction half-cell, ferrocene dicarboxylic acid was polymerized with polyethylene glycol phase for an electrolyte. The electrolyte for oxidation half-cell was viologen-PEG polymer, prepared by a laboratory colleague, Rana Kanishka. The hybrid cell using these materials was fabricated in a sandwich model configuration. Further, electrochemical experiments were employed for assessing the performance of the cell. In conclusion, the electrode and electrolyte materials showed excellent electrochemical behavior and were appropriate for this type of hybrid cell.
机译:随着全球经济的快速发展,化石燃料的枯竭以及环境污染的加剧,迫切需要与能量转换和存储相关的新技术。超级电容器已经引起了极大的关注,现在已广泛用于储能。它们可满足高功率需求快速充电和放电,但能量密度低。该研究的目的是合成电极和电解质材料,以制造具有高能量密度的混合超级电容器电池。在该混合电池中,碳纳米管用作电极,有助于静电电容,氧化还原聚合物用作电解质,可解释氧化还原或法拉第电容,从而提高了能量密度。对于还原半电池,将二茂铁二羧酸与聚乙二醇相聚合作为电解质。用于氧化半电池的电解质是紫精-PEG聚合物,由实验室同事Rana Kanishka制备。使用这些材料的混合电池以三明治模型构造制造。另外,采用电化学实验来评估电池的性能。总之,电极和电解质材料显示出优异的电化学性能,适合于这种类型的混合电池。

著录项

  • 作者

    Rahangdale, Shalaka.;

  • 作者单位

    San Jose State University.;

  • 授予单位 San Jose State University.;
  • 学科 Organic chemistry.;Chemistry.
  • 学位 M.S.
  • 年度 2018
  • 页码 100 p.
  • 总页数 100
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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