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Energy Efficient Glazing for Adaptive Solar Control Fabricated with Photothermotropic Hydrogels Containing Graphene Oxide

机译:含氧化石墨烯的光热水凝胶制备的自适应日光控制用节能玻璃

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摘要

Glazing for adaptive solar control is the most promising for energy efficient development, because the use of this technology in buildings can be expected to significantly impact energy use and efficiency by screening sunlight that enters a building in summer. To achieve autonomous adjustable transparency, we have developed photothermotropic material system by combining photothermal materials with thermotropic hydrogels. We found that graphene oxide dispersed within a hydrogel matrix effectively converts the photo energy of sunlight into thermal energy, providing the efficient means to trigger transparency of thermotropic hydrogels. Therefore, we could develop switchable glazing of novel photothermotropic mechanism that screen strong sunlight and heat radiation in response to the sunlight intensity, as well as the temperature. Furthermore, in this study, a prototype device was manufactured with developed materials and successfully operated in outdoor testing.
机译:自适应太阳能控制玻璃是节能发展的最有希望的方法,因为通过屏蔽夏季进入建筑物的阳光,预计在建筑物中使用该技术会显着影响能源使用和效率。为了实现自主可调节的透明度,我们通过将光热材料与热致水凝胶相结合,开发了光热致材料系统。我们发现分散在水凝胶基质中的氧化石墨烯有效地将阳光的光能转换为热能,从而提供了触发热致水凝胶透明性的有效手段。因此,我们可以开发出一种新型的光致热机制的可切换玻璃,该机制可根据日光强度和温度来屏蔽强烈的日光和热辐射。此外,在这项研究中,原型设备是用经过开发的材料制造的,并在户外测试中成功运行。

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