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用于封闭空间中透明辐射冷却的柔性自清洁 Janus 发射器

Flexible Self-Cleaning Janus Emitter for Transparent Radiative Cooling in Enclosed Spaces.

作者信息

Park Junkyeong, Lim Hangyu, Keawmuang Harit, Chae Dongwoo, Lee Heon, Rho Junsuk

机构信息

Department of Mechanical Engineering, Pohang University of Science and Technology (POSTECH), Pohang, 37673, Republic of Korea.

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

出版信息

Small. 2025 Aug;21(32):e2501840. doi: 10.1002/smll.202501840. Epub 2025 Jun 11.

Abstract

Passive daytime radiative cooling is a sustainable and cost-efficient strategy that works by reflecting solar radiation and emitting heat to the cold universe through infrared radiation. However, cooling enclosed spaces that retain heat due to the greenhouse effect remains a significant challenge, particularly for transparent radiative coolers. Here, the Janus Transparent Radiative Cooler (JTRC) is introduced, which simultaneously achieves strong solar spectrum reflectivity, high infrared emissivity, and high heat absorptivity within enclosed spaces, all while maintaining transparency for practical real-world applications. Uniquely functioning as a Janus device, with one side acting as a selective emitter and the other as a broadband emitter, this design effectively extracts internal heat while blocking external heat. As a result, it minimizes heat accumulation in enclosed spaces, effectively addressing the greenhouse effect. During the daytime, the JTRC achieved a temperature reduction of 20 °C compared to a conventional transparent radiative cooling method. This transparent, flexible, self-cleaning, and high-performance cooler demonstrates significant advancements over conventional designs and highlights its potential for practical applications in vehicles, buildings, and electronic devices requiring thermal management.

摘要

被动式日间辐射制冷是一种可持续且经济高效的策略,其工作原理是反射太阳辐射,并通过红外辐射将热量散发到寒冷的宇宙中。然而,冷却因温室效应而蓄热的封闭空间仍然是一项重大挑战,尤其是对于透明辐射冷却器而言。在此,我们介绍了一种双面透明辐射冷却器(JTRC),它在封闭空间内同时实现了强太阳光谱反射率、高红外发射率和高吸热性,同时在实际应用中保持透明度。这种独特的设计作为一种双面器件发挥作用,一侧作为选择性发射器,另一侧作为宽带发射器,有效阻挡外部热量的同时提取内部热量。因此,它能最大限度地减少封闭空间内的热量积聚,有效应对温室效应。在白天,与传统透明辐射冷却方法相比,JTRC实现了20°C的降温。这种透明、灵活、自清洁且高性能的冷却器相较于传统设计有显著进步,并凸显了其在车辆、建筑和需要热管理的电子设备等实际应用中的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9d71/12366264/3d9eb8701de2/SMLL-21-2501840-g004.jpg

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