首页> 外文期刊>Applied Surface Science >Defective impacts on amorphous WO_3·H_2O films using accelerated hydrolysis effects for flexible electrochromic energy-storage devices
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Defective impacts on amorphous WO_3·H_2O films using accelerated hydrolysis effects for flexible electrochromic energy-storage devices

机译:使用加速水解效应对柔性电致变色能量储存装置的加速水解效果有缺陷的影响

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摘要

We newly developed amorphous WO3·H2O (a-WO3·H2O) films with porosity and oxygen vacancy (VO) defects through a humidity adjustment causing the accelerated hydrolysis of WOCl4 with H2O during spin-coating and during low-temperature annealing for flexible electrochromic (EC) energy-storage devices. Optimizing the hydrolysis effect in all a-WO3·H2O films, we adjusted the humidity to 25, 35, and 45% in a humid chamber. Specifically, the a-WO3·H2O film fabricated at 35% exhibited a developed porous morphology and an increased number of VO defects, providing increased electrochemically active sites and enhanced electrical conductivity, respectively, due to the accelerated hydrolysis of WOCl4 and the increased intercalation of water molecules. Such behaviors of the a-WO3·H2O film bring about superior flexible EC energy-storage performances of widened transmittance modulation (60.0% at 633 nm), fast switching speeds (3.4 s for coloration speed and 4.2 s for bleaching speed), a high CE (62.7 cm2/C), good specific capacitance (94.2 F/g at 2 A/g), and rate capability (74.3%). Specifically, the increased transmittance modulation and specific capacitance stem from the increased electrochemical activity caused by the enriched electrochemically active sites. Moreover, the fast switching speeds and good rate capability are generated by electrochemical kinetics improved with the porous morphology and the increased VO.
机译:通过湿度调节,我们新开发的无定形WO3·H2O(A-WO3·H2O)膜,孔隙率和氧空位(VO)缺陷,导致旋涂期间用H2O加速水解WOCL4和柔性电致色彩的低温退火( EC)储能设备。优化所有A-WO3·H 2 O膜中的水解效果,在潮湿的室中调整湿度至25,35和45%。具体地,在35%制备的A-WO3·H 2 O膜表现出显影的多孔形态和增加的VO缺陷数量,由于WOCL4的加速水解和增加的嵌入而增加了电化学活性位点和增强的导电性。水分子。 A-WO3·H2O薄膜的这种行为带来了透射透射率调节的优异柔性EC能量储存性能(633nm处的60.0%),快速开关速度(3.4秒,用于漂白速度为4.2秒),高Ce(62.7cm2 / c),良好的特定电容(2 a / g为94.2 f / g),以及速率能力(74.3%)。具体地,增加的透射率调制和特定电容源于由富集的电化学活性位点引起的增加的电化学活性。此外,通过多孔形态和增加的vo,通过电化学动力学产生快速的开关速度和良好的速率能力。

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  • 来源
    《Applied Surface Science》 |2021年第1期|149664.1-149664.8|共8页
  • 作者

    Jo M.-H.; Ahn H.-J.; Koo B.-R.;

  • 作者单位

    Department of Materials Science and Engineering Seoul National University of Science and Technology Seoul 01811 South Korea;

    Program of Materials Science & Engineering Convergence Institute of Biomedical Engineering and Biomaterials Seoul National University of Science and Technology Seoul 01811 South Korea;

    Department of Materials Science and Engineering Seoul National University of Science and Technology Seoul 01811 South Korea|Program of Materials Science & Engineering Convergence Institute of Biomedical Engineering and Biomaterials Seoul National University of Science and Technology Seoul 01811 South Korea;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Amorphous WO3·H2O; Electrochromic energy-storage performances; Flexible film; Hydrolysis; Low-temperature process;

    机译:无定形WO3·H2O;电致变色能量储存性能;柔性薄膜;水解;低温过程;

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