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一种用于具有不同发射率物体的辐射热管理的三模中红外调制器。

A Triple-Mode Midinfrared Modulator for Radiative Heat Management of Objects with Various Emissivity.

作者信息

Fang Haoming, Xie Wanrong, Li Xiuqiang, Fan Kebin, Lai Yi-Ting, Sun Bowen, Bai Shulin, Padilla Willie J, Hsu Po-Chun

机构信息

Department of Mechanical Engineering and Materials Science, Duke University, Durham, North Carolina 27708, United States.

Department of Materials Science and Engineering, HEDPS/CAPT/LTCS, Key Laboratory of Polymer Chemistry and Physics of Ministry of Education, College of Engineering, Peking University, Beijing 100871, China.

出版信息

Nano Lett. 2021 May 12;21(9):4106-4114. doi: 10.1021/acs.nanolett.1c01147. Epub 2021 Apr 26.

Abstract

Thermal management is ubiquitous in the modern world and indispensable for a sustainable future. Radiative heat management provides unique advantages because the heat transfer can be controlled by the surface. However, different object emissivities require different tuning strategies, which poses challenges to develop dynamic and universal radiative heat management devices. Here, we demonstrate a triple-mode midinfrared modulator that can switch between passive heating and cooling suitable for all types of object surface emissivities. The device comprises a surface-textured infrared-semiabsorbing elastomer coated with a metallic back reflector, which is biaxially strained to sequentially achieve three fundamental modes: emission, reflection, and transmission. By analyzing and optimizing the coupling between optical and mechanical properties, we achieve a performance as follows: emittance contrast Δε = 0.58, transmittance contrast Δτ = 0.49, and reflectance contrast Δρ = 0.39. The device can provide a new design paradigm of radiation heat regulation for wearable, robotics, and camouflage technologies.

摘要

热管理在现代世界中无处不在,对于可持续发展的未来不可或缺。辐射热管理具有独特优势,因为热传递可通过表面进行控制。然而,不同的物体发射率需要不同的调谐策略,这对开发动态且通用的辐射热管理设备构成了挑战。在此,我们展示了一种三模式中红外调制器,它可以在被动加热和冷却之间切换,适用于所有类型的物体表面发射率。该设备包括一个表面纹理化的红外半吸收弹性体,上面涂有金属背反射器,通过双轴拉伸依次实现三种基本模式:发射、反射和透射。通过分析和优化光学与机械性能之间的耦合,我们实现了如下性能:发射率对比度Δε = 0.58,透过率对比度Δτ = 0.49,反射率对比度Δρ = 0.39。该设备可为可穿戴、机器人和伪装技术提供一种新的辐射热调节设计范例。

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