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用于可见光和近红外多波长光谱调制的生物启发式机械响应智能窗户

Bio-inspired Mechanically Responsive Smart Windows for Visible and Near-Infrared Multiwavelength Spectral Modulation.

作者信息

Zhao Fu-Xing, Wang Mei-Hua, Huang Zong-Ying, Zhu Meng-Han, Chen Chen, Pan Qian-Hao, Yu Bang, Wang Yu-Tao, Guo Xin, Qian Yi-Jian, Zhang Li-Wen, Qiu Xiao-Jing, Sheng Si-Zhe, He Zhen, Wang Jin-Long, Yu Shu-Hong

机构信息

Shenzhen Key Laboratory of Sustainable Biomimetic Materials, Guangdong Provincial Key Laboratory of Sustainable Biomimetic Materials and Green Energy, Department of Materials Science and Engineering, Institute of Innovative Materials, Guangming Advanced Research Institute, Southern University of Science and Technology, Shenzhen, 518055, China.

New Cornerstone Science Laboratory, Division of Nanomaterials & Chemistry Hefei National Research Center for Physical Sciences at the Microscale, Department of Chemistry, Institute of Biomimetic Materials & Chemistry, Anhui Engineering Laboratory of Biomimetic Materials, University of Science and Technology of China, Hefei, 230026, China.

出版信息

Adv Mater. 2024 Oct;36(40):e2408192. doi: 10.1002/adma.202408192. Epub 2024 Aug 19.

Abstract

Mechanochromic light control technology that can dynamically regulate solar irradiation is recognized as one of the leading candidates for energy-saving windows. However, the lack of spectrally selective modulation ability still hinders its application for different scenarios or individual needs. Here, inspired by the generation of structure color and color change of living organisms, a simple layer-by-layer assembly approach toward large-area fabricating mechanically responsive film for visible and near-infrared multiwavelength spectral modulation smart windows is reported here. The assembled SiO nanoparticles and WO nanowires enable the film with an optical modulation rate of up to 42.4% at the wavelength of 550 nm and 18.4% for the near-infrared region, separately, and the typical composite film under 50% stretching shows ≈41.6% modulation rate at the wavelength of 550 nm with NIR modulation rate less than 2.7%. More importantly, the introduction of the multilayer assembly structure not only optimizes the film's optical modulation but also enables the film with high stability during 100 000 stretching cycles. A cooling effect of 21.3 and 6.9 °C for the blackbody and air inside a model house in the real environmental application is achieved. This approach provides theoretical and technical support for the new mechanochromic energy-saving windows.

摘要

能够动态调节太阳辐射的机械变色光控技术被认为是节能窗户的主要候选技术之一。然而,缺乏光谱选择性调制能力仍然阻碍了其在不同场景或个人需求中的应用。在此,受生物体结构色的产生和颜色变化的启发,本文报道了一种简单的逐层组装方法,用于大面积制备用于可见光和近红外多波长光谱调制智能窗户的机械响应膜。组装的SiO纳米颗粒和WO纳米线使该膜在550nm波长处的光学调制率高达42.4%,在近红外区域分别为18.4%,在50%拉伸下的典型复合膜在550nm波长处显示出约41.6%的调制率,近红外调制率小于2.7%。更重要的是,多层组装结构的引入不仅优化了膜的光学调制,还使膜在100000次拉伸循环中具有高稳定性。在实际环境应用中,模型房屋内黑体和空气的冷却效果分别达到21.3和6.9℃。这种方法为新型机械变色节能窗户提供了理论和技术支持。

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