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首页> 外文期刊>Nanotechnology >Efficient synthesis of tungsten oxide hydrate-based nanocomposites for applications in bifunctional electrochromic-energy storage devices
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Efficient synthesis of tungsten oxide hydrate-based nanocomposites for applications in bifunctional electrochromic-energy storage devices

机译:高效合成氧化钨水合物纳米复合材料,用于双功能电致变色 - 能量存储装置

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摘要

In this work, we realized the large-scale synthesis of WO3 center dot H2O nanoflakes (NFs), g-C3N4/WO3 center dot H2O nanocomposite (NC) and graphene (G)/WO3 center dot H2O NC via a sonochemical process with tungsten salt as the precursor, g-C3N4 or G sheets as the supports, and distilled water as the solvent. Both the g-C3N4/WO3 center dot H2O NC and G/WO3 center dot H2O NC exhibited much better electrochromic (EC) performance (higher coloration efficiencies and faster response times) than that of the WO3 center dot H2O NFs. Using the WO3 center dot H2O-based materials as electrode materials, EC batteries that integrate the energy storage and EC functions in one device have been assembled. The energy status of the EC batteries could be visually indicated by the reversible color variations. Compared with the plain WO3 center dot H2O-based EC batteries, the NC-based EC batteries possessed a lower color contrast between the charged and discharged conditions but much longer discharge durations. The EC batteries could be quickly charged in a few seconds by adding H2O2, and the charged batteries exhibited significantly-enhanced discharging durations in comparison with the initial ones. The g-C3N4/WO3 center dot H2O NC-EC batteries charged by a small amount of H2O2 could produce a long discharging duration up to 760 min.
机译:在这项工作中,我们通过多钨的多种子化学方法实现了WO3中心点H2O纳米薄膜(NFS),G-C3N4 / WO3中心点H2O纳米复合材料(NC)和石墨烯(G)/ WO3中心点H2O NC的大规模合成盐作为前体,G-C3N4或G片作为载体,并作为溶剂蒸馏水。 G-C3N4 / WO3中心点H2O NC和G / WO3中心点H2O NC都表现出比WO3中心点H2O NFS更好的电致变色(EC)性能(更高的着色效率和更快的响应时间)。使用WO3中心点H2O基材料作为电极材料,组装了一个设备中集成了能量存储和EC功能的EC电池。可以通过可逆颜色变化目视指示EC电池的能量状态。与普通的WO3中心点H2O型EC电池相比,基于NC的EC电池在充电和放电条件之间具有较低的颜色对比,但持续的持续时间更长。通过添加H2O2,可以在几秒钟内快速充电EC电池,并将带电电池与初始电池表现出显着增强的放电持续时间。通过少量H 2 O 2充电的G-C3N4 / WO3中心点H2O NC-EC电池可以产生长达760分钟的长放电持续时间。

著录项

  • 来源
    《Nanotechnology 》 |2018年第18期| 共11页
  • 作者单位

    Shanghai Maritime Univ Inst Marine Mat Sci &

    Engn Shanghai 201306 Peoples R China;

    Shanghai Maritime Univ Coll Logist Engn Shanghai 201306 Peoples R China;

    Shanghai Maritime Univ Coll Logist Engn Shanghai 201306 Peoples R China;

    Shanghai Maritime Univ Coll Logist Engn Shanghai 201306 Peoples R China;

    Shanghai Maritime Univ Inst Marine Mat Sci &

    Engn Shanghai 201306 Peoples R China;

    Shanghai Maritime Univ Inst Marine Mat Sci &

    Engn Shanghai 201306 Peoples R China;

    Shanghai Maritime Univ Inst Marine Mat Sci &

    Engn Shanghai 201306 Peoples R China;

    Shanghai Maritime Univ Inst Marine Mat Sci &

    Engn Shanghai 201306 Peoples R China;

    Univ Exeter Coll Engn Math &

    Phys Sci Exeter EX4 4SB Devon England;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 特种结构材料 ;
  • 关键词

    WO3 center dot H2O; sonochemical; nanocomposite; electrochromic battery; discharging duration;

    机译:WO3中心点H2O;SONOCHEMICAL;纳米复合材料;电致变色电池;放电持续时间;

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