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

Haoming Fang, Wanrong Xie, Xiuqiang Li, Kebin Fan, Yi‐Ting Lai, Bowen Sun, Shu‐Lin Bai, Willie J. Padilla, Po‐Chun Hsu

2021Nano Letters67 citationsDOI

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.

Topics & Concepts

EmissivityMaterials scienceThermal emittanceThermal radiationRadiative coolingTransmittanceOptoelectronicsReflection (computer programming)Radiative transferReflector (photography)OpticsHeat transferCamouflageComputer sciencePhysicsArtificial intelligenceThermodynamicsLight sourceBeam (structure)Programming languageThermal Radiation and Cooling TechnologiesUrban Heat Island MitigationOptical properties and cooling technologies in crystalline materials
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