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用于彩色辐射冷却的胶体光子组件

Colloidal Photonic Assemblies for Colorful Radiative Cooling.

作者信息

Kim Hyeon Ho, Im Eunji, Lee Seungwoo

机构信息

KU-KIST Graduate School of Converging Science and Technology, Korea University, Seoul 02841, Republic of Korea.

Department of Biomicrosystem Technology, Korea University, Seoul 02841, Republic of Korea.

出版信息

Langmuir. 2020 Jun 16;36(23):6589-6596. doi: 10.1021/acs.langmuir.0c00051. Epub 2020 May 15.

Abstract

Radiative cooling has proven to be a powerful strategy for sustainable thermal management. Nanophotonic structures enabling broadband reflection lead to minimization of sunlight absorption, which has brought nighttime-limited radiative cooling into daytime applications. However, this broadband reflection strategy in turn restricts the accessible colorization of radiative coolers to white or neutral, consequently hindering their practical applications, particularly for aesthetic purposes. With a few exceptions, selective absorption at a specific visible wavelength has been the most prevalent paradigm for colorization of radiative coolers. However, this absorption-based colorization inevitably makes the radiative cooler prone to heating, thus decreasing the cooling efficiency. Here, we demonstrate an undiscovered usage of opals for advancing color-preserved daytime radiative coolers. Opals, which have served mainly as Bragg reflective color pigments thus far, can be considered an effective homogeneous medium in the mid-infrared region. Thus, opals can also be envisioned as reflectively colorful metamaterials capable of radiative cooling even under the direct summer sun. Together with the soft fluidity of colloidal suspensions, opals can serve as platforms for easy-to-craft, large-scale, and colorful radiative coolers with minimal solar absorption.

摘要

辐射冷却已被证明是一种可持续热管理的有效策略。能够实现宽带反射的纳米光子结构可将阳光吸收降至最低,这使得夜间受限的辐射冷却能够应用于白天。然而,这种宽带反射策略反过来将辐射冷却器的可实现颜色限制为白色或中性色,从而阻碍了它们的实际应用,特别是出于美学目的的应用。除了少数例外情况,在特定可见波长处的选择性吸收一直是辐射冷却器实现颜色化的最普遍模式。然而,这种基于吸收的颜色化不可避免地使辐射冷却器易于发热,从而降低冷却效率。在这里,我们展示了蛋白石在推进保色白天辐射冷却器方面的一种未被发现的用途。蛋白石迄今为止主要用作布拉格反射彩色颜料,在中红外区域可被视为一种有效的均匀介质。因此,蛋白石也可被设想为即使在夏季直射阳光下也能进行辐射冷却的反射彩色超材料。结合胶体悬浮液的柔软流动性,蛋白石可作为易于制作、大规模且色彩丰富的辐射冷却器的平台,同时具有最小的太阳吸收。

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