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热管理智能窗用热致变色水凝胶(英文)

Thermochromic hydrogels for thermal management smart windows

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【作者】 李沐坤邱培育温浩博阮坤鹏顾军渭

【Author】 Mukun Li;Peiyu Qiu;Haobo Wen;Kunpeng Ruan;Junwei Gu;School of Chemistry and Chemical Engineering, Northwestern Polytechnical University;Queen Mary University of London Engineering School, Northwestern Polytechnical University;

【通讯作者】 阮坤鹏;顾军渭;

【机构】 School of Chemistry and Chemical Engineering, Northwestern Polytechnical UniversityQueen Mary University of London Engineering School, Northwestern Polytechnical University

【摘要】 Thermal management smart windows can regulate indoor temperature by adjusting the intensity or spectral distribution of incoming solar radiation. This functionality helps reduce the energy demand of heating, ventilation, and air-conditioning(HVAC) systems, thereby contributing to energy conservation,emission reduction, and the achievement of carbon neutrality. Thermochromic hydrogels, with their intrinsic temperature responsiveness, broadband optical modulation capability, facile tunability, and low cost, have become ideal thermochromic materials for thermal management smart windows. This review focuses on thermochromic hydrogels for thermal management smart windows and introduces the research progress of intrinsic thermochromic hydrogels and their thermal management smart windows from the perspectives of chemical modification strategies and physical modification strategies.Then, the research progress of composite thermochromic hydrogels and their applications in thermal management smart windows is systematically reviewed, with particular emphasis on the incorporation of photothermal conversion fillers and thermochromic components. Moreover, current challenges and potential improvement strategies of thermochromic hydrogels for thermal management smart windows are identified and discussed. The aim of this review is to systematically summarize the optimization strategies for thermochromic hydrogels in thermal management smart windows and to provide guidance for future in-depth research, thereby promoting the advancement and application of thermochromic hydrogels for smart windows.

【Abstract】 Thermal management smart windows can regulate indoor temperature by adjusting the intensity or spectral distribution of incoming solar radiation. This functionality helps reduce the energy demand of heating, ventilation, and air-conditioning(HVAC) systems, thereby contributing to energy conservation,emission reduction, and the achievement of carbon neutrality. Thermochromic hydrogels, with their intrinsic temperature responsiveness, broadband optical modulation capability, facile tunability, and low cost, have become ideal thermochromic materials for thermal management smart windows. This review focuses on thermochromic hydrogels for thermal management smart windows and introduces the research progress of intrinsic thermochromic hydrogels and their thermal management smart windows from the perspectives of chemical modification strategies and physical modification strategies.Then, the research progress of composite thermochromic hydrogels and their applications in thermal management smart windows is systematically reviewed, with particular emphasis on the incorporation of photothermal conversion fillers and thermochromic components. Moreover, current challenges and potential improvement strategies of thermochromic hydrogels for thermal management smart windows are identified and discussed. The aim of this review is to systematically summarize the optimization strategies for thermochromic hydrogels in thermal management smart windows and to provide guidance for future in-depth research, thereby promoting the advancement and application of thermochromic hydrogels for smart windows.

【基金】 supported by the National Natural Science Foundation of China (52473083);Natural Science Basic Research Program of Shaanxi (2024JC-TBZC-04);the Innovation Capability Support Program of Shaanxi (2024RS-CXTD-57);Foundation of Aeronautics Science Fund (2024Z054053002);Natural Science Basic Research Program of Shaanxi (2025JC-YBQN-587);Fundamental Research Funds for the Central Universities(D5000240067);Undergraduate Innovation&Business Program in Northwestern Polytechnical University (202510699268and S202510699635)
  • 【文献出处】 Science Bulletin ,科学通报(英文版) , 编辑部邮箱 ,2026年04期
  • 【分类号】TQ427.26
  • 【下载频次】19
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