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对压缩敏感的智能窗户:用于动态透明度变化的倾斜孔隙

Compression-sensitive smart windows: inclined pores for dynamic transparency changes.

作者信息

Chen Haomin, Chang Gunho, Lee Tae Hee, Min Seokhwan, Nam Sanghyeon, Cho Donghwi, Ko Kwonhwan, Bae Gwangmin, Lee Yoonseong, Feng Jirou, Zhang Heng, Kim Jang-Kyo, Shin Jonghwa, Hong Jung-Wuk, Jeon Seokwoo

机构信息

Department of Materials Science and Engineering, Korea University, 02841, Seoul, Republic of Korea.

Department of Materials Science and Engineering, Korea Advanced Institute of Science and Technology, 34141, Daejeon, Republic of Korea.

出版信息

Nat Commun. 2024 Sep 14;15(1):8074. doi: 10.1038/s41467-024-52305-6.

Abstract

Smart windows, capable of tailoring light transmission, can significantly reduce energy consumption in building services. While mechano-responsive windows activated by strains are promising candidates, they face long-lasting challenges in which the space for the light scatterer's operation has to be enlarged along with the window size, undermining the practicality. Recent attempts to tackle this challenge inevitably generate side effects with compromised performance in light modulation. Here, we introduce a cuttlefish-inspired design to enable the closing and opening of pores within the 3D porous structure by through-thickness compression, offering opacity and transparency upon release and compression. By changing the activation mode from the conventional in-plane to through-thickness direction, the space requirement is intrinsically decoupled from the lateral size of the scatterer. Central to our design is the asymmetry of pore orientation in the 3D porous structure. These inclined pores against the normal direction increase the opaqueness upon release and improve light modulation sensitivity to compression, enabling transmittance regulation upon compression by an infinitesimal displacement of 50 μm. This work establishes a milestone for smart window technologies and will drive advancements in the development of opto-electric devices.

摘要

智能窗户能够调节光传输,可显著降低建筑服务中的能源消耗。虽然由应变激活的机械响应窗户是很有潜力的候选方案,但它们面临着长期挑战,即随着窗户尺寸增大,光散射体的作用空间也必须扩大,这有损其实用性。最近应对这一挑战的尝试不可避免地产生了副作用,导致光调制性能受损。在此,我们引入一种受乌贼启发的设计,通过厚度方向的压缩实现三维多孔结构内孔隙的开合,在释放和压缩时分别呈现不透明和透明状态。通过将激活方式从传统的面内方向改为厚度方向,空间需求与散射体的横向尺寸实现了内在解耦。我们设计的核心是三维多孔结构中孔隙取向的不对称性。这些与法线方向成一定角度的倾斜孔隙在释放时增加了不透明度,并提高了对压缩的光调制灵敏度,通过50μm的微小位移压缩就能实现透射率调节。这项工作为智能窗户技术树立了一个里程碑,并将推动光电器件的发展进步。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2e6c/11401924/8f26fb24bc95/41467_2024_52305_Fig1_HTML.jpg

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