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Self-Assembled Carbon-Polyoxometalate Composites for Electrochemical Capacitors

机译:自组装电化学电容器用碳-多金属氧酸盐复合材料

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摘要

The development of high performance yet cost effective energy storage devices is critical for enabling the growth of important emerging sectors from the internet of things to grid integration of renewable energy. Material costs are by far the largest contributor to the overall cost of energy storage devices and thus research into cost effective energy storage materials will play an important role in developing technology to meet real world storage demands.;In this thesis, low cost high performance composite electrode materials for supercapacitors (SCs) have been developed through the surface modification of electrochemically double layer capacitive (EDLC) carbon substrates with pseudocapacitive Polyoxometalates (POMs). Significant fundamental contributions have been made to the understanding of all components of the composite electrode including the POM active layer, cation linker, and carbon substrate. The interaction of different POM chemistries in solution has been studied to elucidate the novel ways in which these molecules combine and the mechanism underlying this combination. A more thorough understanding regarding the cation linker's role in electrode fabrication has been developed through examining the linker properties which most strongly affect electrode performance. The development of porosity in biomass derived carbon materials has also been examined leading to important insights regarding the effect of substrate porosity on POM modification and electrochemical properties.;These fundamental contributions enabled the design and performance optimization of POM-carbon composite SC electrodes. Understanding how POMs combine in solution, allowed for the development of mixed POM molecular coatings with tunable electrochemical properties. These molecular coatings were used to modify low cost biomass derived carbon substrates that had been structurally optimized to accommodate POM molecules. The resulting electrode composites utilizing low cost materials fabricated through simple scalable techniques demonstrated (i) high capacitance (361 F g-1), (ii) close to ideal pseudocapacitive behavior, (iii) stable cycling, and (iv) good rate performance.
机译:高性能但具有成本效益的储能设备的开发对于使重要的新兴部门(从物联网到可再生能源的网格集成)的增长至关重要。迄今为止,材料成本是储能设备总体成本的最大贡献,因此,对具有成本效益的储能材料的研究将在开发技术以满足现实世界的储能需求中发挥重要作用。超级电容器(SCs)的电极材料是通过使用伪电容多金属氧酸盐(POM)对电化学双层电容(EDLC)碳基材进行表面改性而开发的。在理解复合电极的所有组件(包括POM活性层,阳离子连接体和碳基材)方面做出了重要的基础性贡献。已经研究了溶液中不同POM化学物质之间的相互作用,以阐明这些分子结合的新颖方式以及这种结合的潜在机理。通过检查最强烈影响电极性能的接头性质,已对阳离子接头在电极制造中的作用有了更全面的了解。还检查了生物质衍生碳材料中孔隙率的发展,从而获得了有关基质孔隙率对POM改性和电化学性能的影响的重要见解。这些基本贡献使POM-碳复合材料SC电极的设计和性能得以优化。了解POM如何在溶液中结合,可以开发具有可调电化学性能的混合POM分子涂层。这些分子涂层用于修饰低成本生物质衍生的碳底物,该底物已在结构上进行了优化以适应POM分子。所得的电极复合材料利用通过简单的可扩展技术制造的低成本材料证明了(i)高电容(361 F g-1),(ii)接近理想的伪电容特性,(iii)稳定的循环以及(iv)良好的倍率性能。

著录项

  • 作者

    Genovese, Matthew.;

  • 作者单位

    University of Toronto (Canada).;

  • 授予单位 University of Toronto (Canada).;
  • 学科 Materials science.
  • 学位 Ph.D.
  • 年度 2017
  • 页码 199 p.
  • 总页数 199
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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