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基于形状变形折纸结构的太阳能/辐射冷却双调节智能窗

A solar/radiative cooling dual-regulation smart window based on shape-morphing kirigami structures.

作者信息

Wang Shancheng, Dong Yuting, Li Yanbin, Ryu Keunhyuk, Dong Zhili, Chen Jian, Dai Zhendong, Ke Yujie, Yin Jie, Long Yi

机构信息

Department of Electrical Engineering, The Chinese University of Hong Kong, Shatin, New Territories, Hong Kong SAR, China.

School of Materials Science and Engineering, Nanyang Technological University, 639798, Singapore.

出版信息

Mater Horiz. 2023 Oct 2;10(10):4243-4250. doi: 10.1039/d3mh00671a.

Abstract

The energy efficiency of buildings has become a critical issue due to their substantial contribution to global energy consumption. Windows, in particular, are often the least efficient component of the building envelope, and conventional smart windows focus solely on regulating solar transmittance while overlooking radiative cooling. Although several recent designs achieved dual-control of solar and radiative cooling, these windows still face limitations in terms of durability, limited modulation ability and energy-saving performance. To address these challenges, we propose a novel dual-control smart window design consisting of a reconfigurable kirigami structure and polydimethylsiloxane-laminated thermochromic hydrogel coated with silver nanowires. In summer, the thermochromic hydrogel turns translucent to suppress the solar heat gain, while the high emissivity kirigami structure covers the exterior surface of the window, promoting radiative cooling. In winter, the hydrogel becomes transparent to allow for solar transmission. Additionally, the kirigami structure undergoes an out-of-plane structural change, opening towards the outside environment to expose the underlying low-emissivity silver nanowires and suppress heat radiation. Our design achieves a promising solar transmittance modulation ability of ∼24% and a good long-wave infrared emissivity regulation ability of 0.5. Furthermore, it exhibits significantly improved durability, which is nine times longer than the lifespan of conventional smart hydrogels. Our novel approach offers a promising solution for constructing energy-efficient and durable smart windows and outperforms existing state-of-the-art solar/radiative cooling dual-regulation smart windows in the literature.

摘要

由于建筑物对全球能源消耗有重大贡献,其能源效率已成为一个关键问题。特别是窗户,往往是建筑围护结构中效率最低的部分,传统的智能窗户仅专注于调节太阳透射率,而忽视了辐射冷却。尽管最近有几种设计实现了太阳能和辐射冷却的双重控制,但这些窗户在耐久性、调制能力有限和节能性能方面仍面临限制。为应对这些挑战,我们提出了一种新颖的双重控制智能窗户设计,它由可重构的剪纸结构和涂有银纳米线的聚二甲基硅氧烷层压热致变色水凝胶组成。在夏季,热致变色水凝胶变为半透明以抑制太阳热量获取,而高发射率的剪纸结构覆盖窗户的外表面,促进辐射冷却。在冬季,水凝胶变得透明以允许太阳辐射进入。此外,剪纸结构发生面外结构变化,向外部环境打开以露出下面的低发射率银纳米线并抑制热辐射。我们的设计实现了约24%的有前景的太阳透射率调制能力和0.5的良好的长波红外发射率调节能力。此外,它的耐久性显著提高,比传统智能水凝胶的寿命长九倍。我们的新方法为构建节能且耐用的智能窗户提供了一个有前景的解决方案,并且优于文献中现有的最先进的太阳能/辐射冷却双重调节智能窗户。

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