Stability Enhancement and Broadband Optical Modulation in Viologen-Based Electrochromic Smart Windows
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摘要
Organic electrochromic small molecules are promising for smart windows owing to their structural tunability, diverse colors, and solution processability. However, limited near-infrared absorption, cycling stability, and modulation modes hinder their development. This presentation highlights three studies addressing stability and spectral modulation. In one study, polymer anchoring and confinement improve cycling stability, while viologen side-group design enables diverse colors[1]. In another, polar-group interactions improve cycling reversibility, while molecular design and π-stacking regulation enhance near-infrared absorption[2]. In the third, combining viologens with matched redox potentials and complementary absorption enables stable near-black coloration and broadband visible–near-infrared modulation. Integration with a thermochromic layer enables synergistic solar modulation[3]. These studies provide molecular, polymer, and device design strategies for electrochromic smart windows with improved stability and spectral modulation capabilities.
关键词
Viologens,Electrochromic smart windows,Cycling stability,Broadband optical modulation
报告人
锡录 吴
讲师 嘉兴大学

稿件作者
锡录 吴 嘉兴大学
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重要日期
  • 会议日期

    10月26日

    2026

    至

    10月30日

    2026

  • 10月07日 2026

    初稿截稿日期

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杭州市北京航空航天大学国际创新研究院(北京航空航天大学国际创新学院)
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