College of Mechanical and Vehicle Engineering, National Engineering Research Center for High-Efficiency Grinding, Hunan University, Changsha410082, China.
National Engineering Research Center of Electromagnetic Radiation Control Materials, State Key Laboratory of Electronic Thin-Films and Integrated Devices, University of Electronic Science and Technology of China, Chengdu610054, China.
ACS Appl Mater Interfaces. 2022 Dec 21;14(50):56065-56073. doi: 10.1021/acsami.2c15767. Epub 2022 Dec 12.
Smart windows with tunable optical properties for energy-saving and privacy protection applications are receiving increasing attention. However, current studies of smart windows either involve the use of complex material preparation processes and complex device systems for window switching or continue to face several challenges, including low luminous transmittance, low luminous and solar modulation, and narrow wavelength range management problems. Here, we report a dual-responsive smart window that achieves solar light management in the range of 200-2500 nm. This smart window is fabricated by combining a reversible thermoresponsive hydrogel that acts as a thermochromic material with a ZnO/Ag/ZnO multilayer film that acts as a transparent heater. The as-prepared smart window can modulate solar light over a range from ultraviolet to infrared and achieves active responses to high-temperature weather, with passive responses being produced through electrical heating. The smart window shows high luminous transmittance (81.7%) and high luminous modulation (81.6%), together with an outstanding solar modulation performance (62.9%). In outdoor demonstrations, the as-prepared smart window exhibited a promising temperature regulation ability under strong solar irradiation. Therefore, the proposed smart window promises to provide a simple and effective energy management technology for buildings.
具有可调光学性能的智能窗户在节能和隐私保护应用方面受到越来越多的关注。然而,目前智能窗户的研究要么涉及到用于窗户切换的复杂材料制备工艺和复杂的器件系统,要么继续面临几个挑战,包括低透光率、低光和太阳能调制以及窄波长范围管理问题。在这里,我们报告了一种双响应智能窗户,它实现了 200-2500nm 范围内的太阳光管理。这种智能窗户是通过将可逆热响应水凝胶作为热致变色材料与 ZnO/Ag/ZnO 多层膜作为透明加热器结合而制备的。所制备的智能窗户可以调节从紫外线到红外线的太阳光,并对高温天气做出主动响应,同时通过电加热产生被动响应。智能窗户具有高透光率(81.7%)和高光调制(81.6%),以及出色的太阳能调制性能(62.9%)。在户外演示中,所制备的智能窗户在强太阳照射下表现出了有前景的温度调节能力。因此,所提出的智能窗户有望为建筑物提供一种简单有效的能源管理技术。