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Al~(3+) intercalation/de-intercalation-enabled dual-band electrochromic smart windows with a high optical modulation, quick response and long cycle life

机译:支持Al〜(3+)嵌入/去嵌入的双波段电致变色智能窗口,具有高光调制,快速响应和长循环寿命

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摘要

Dual-band electrochromic smart windows with independent control of the transmittance of near-infrared (NIR) and visible (VIS) light can contribute significantly to the reduction of building energy consumption. Cost and inadequate electrochromic performance are the current technical challenges. We present here a dual-band electrochromic smart window design based on the intercalation/de-intercalation of Al ~(3+) cations to replace the common use of monovalent cations in electrochromic applications. The Al ~(3+) intercalation/de-intercalation-enabled electrochromic smart window delivers not only efficient and independent control of NIR and VIS light transmittance, but also impressive electrochromic performance – a high optical modulation of the full solar spectrum (93.2%, 91.7%, 88.5%, and 86.8% at 633, 800, 1200, and 1600 nm, respectively), high coloration efficiencies (254 and 121 cm ~(2) C ~(−1) at 1200 and 633 nm, respectively), fast switching times (8/5 s and 16/13 s at 1200 and 633 nm, respectively, for coloration/bleaching), and high bistability and cyclability (a 5.5% capacity loss after 2000 cycles). The good electrochromic performance can be attributed to the effective diffusion of Al ~(3+) in the electrochromic material (as good as that of Li ~(+) ); and a shallow intercalation/de-intercalation depth enabled by the ability of Al ~(3+) to support three-electron redox reactions. The performance of Al ~(3+) intercalation/de-intercalation-enabled dual-band electrochromism was also verified in laboratory prototype devices to confirm its suitability for dual-band smart windows.
机译:独立控制近红外(NIR)和可见光(VIS)透射率的双波段电致变色智能窗户可以显着降低建筑能耗。成本和电致变色性能不足是当前的技术挑战。我们在此介绍一种基于Al〜(3+)阳离子的嵌入/去嵌入的双波段电致变色智能窗口设计,以替代单价阳离子在电致变色应用中的常规使用。启用Al〜(3+)插层/反插层的电致变色智能窗口不仅可以有效且独立地控制NIR和VIS光透射率,而且还具有令人印象深刻的电致变色性能–整个太阳光谱的高光学调制度(93.2%,在633、800、1200和1600 nm处分别达到91.7%,88.5%和86.8%),高着色效率(在1200和633 nm处分别为254和121 cm〜(2)C〜(-1)),快速的切换时间(对于着色/漂白,分别在1200和633 nm处分别为8/5 s和16/13 s),以及高双稳态和可循环性(2000次循环后容量损失5.5%)。良好的电致变色性能可归因于Al〜(3+)在电致变色材料中的有效扩散(与Li〜(+)一样)。 Al〜(3+)能够支持三电子氧化还原反应,因此插层/脱插深度较浅。还在实验室原型设备中验证了支持Al〜(3+)嵌入/解嵌入的双波段电致变色的性能,以确认其适用于双波段智能窗口。

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  • 来源
    《Energy & environmental science》 |2018年第10期|2884-2892|共9页
  • 作者单位

    Department of Chemical and Biomolecular Engineering, National University of Singapore,Cambridge Centre for Advanced Research and Education in Singapore, 1 Create Way;

    Department of Chemical and Biomolecular Engineering, National University of Singapore,Cambridge Centre for Advanced Research and Education in Singapore, 1 Create Way;

    Department of Chemical and Biomolecular Engineering, National University of Singapore,Cambridge Centre for Advanced Research and Education in Singapore, 1 Create Way;

    Cambridge Centre for Advanced Research and Education in Singapore, 1 Create Way,Department of Chemical Engineering and Biotechnology, University of Cambridge, Pembroke Street;

    Department of Chemical and Biomolecular Engineering, National University of Singapore,Cambridge Centre for Advanced Research and Education in Singapore, 1 Create Way;

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