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工程化紫罗碱/聚N-异丙基丙烯酰胺混合双响应材料产生用于自适应太阳透过率调制的可调谐且独特的光学模式。

Engineered Ionene/PNIPAM Hybrid Dual-Response Material Generating Tunable and Unique Optical Modes for Adaptive Solar Transmittance Modulation.

作者信息

Puguan John Marc C, Rathod Pramod V, Kim Hern

机构信息

Department of Energy Science and Technology, Environmental Waste Recycle Institute, Myongji University, Yongin 17058, Gyeonggi-do, Republic of Korea.

出版信息

ACS Appl Mater Interfaces. 2021 Aug 4;13(30):36330-36340. doi: 10.1021/acsami.1c09561. Epub 2021 Jul 26.

Abstract

A hybrid smart window exhibiting dual chromic response properties based on an ionene/polymer material is successfully engineered. Thermochromic poly(-isopropylacrylamide) is integrated with an electrochromic viologen-tethered ionene, also acting as an electrolyte, to produce a smart window that can adaptively control solar visible light transmittance in response to multiple stimuli. This new blend allows the formation of unique reversible optical states, namely, "clear", "amber", "cloudy", and "grainy" states, which are passively triggered by environmental temperature and actively induced by external potential or simultaneously by both. This hybrid material shows tunability in terms of its electrochemical and optical properties, switching kinetics, and coloration efficiency and can also achieve a nearly absolute zero-transmissive state. With the material's excellent solubility and film-forming ability, the smart device can be fabricated with much flexibility and ease. Finally, this device has an all-in-one layer configuration, creating a more compact and simplified design. With all these properties combined, the development of a next-generation multifunctional smart window device, which can efficiently control incoming solar light for energy-saving in buildings and also provide visual comfort, is possible.

摘要

基于紫罗碱连接的离子烯/聚合物材料成功设计出一种具有双变色响应特性的混合智能窗。热致变色聚(N-异丙基丙烯酰胺)与也用作电解质的电致变色紫罗碱连接的离子烯相结合,以生产一种能够响应多种刺激自适应控制太阳可见光透射率的智能窗。这种新的混合物能够形成独特的可逆光学状态,即“透明”、“琥珀色”、“浑浊”和“颗粒状”状态,这些状态由环境温度被动触发,由外部电势主动诱导或由两者同时诱导。这种混合材料在其电化学和光学性质、开关动力学、着色效率方面具有可调性,并且还可以实现近乎绝对的零透射状态。由于该材料具有优异的溶解性和成膜能力,智能器件可以非常灵活且轻松地制造。最后,该器件具有一体化层配置,创造了更紧凑和简化的设计。综合所有这些特性,开发一种下一代多功能智能窗器件成为可能,该器件能够有效控制入射太阳光以实现建筑物节能并提供视觉舒适度。

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