Dynamic Infrared Radiation Regulator Enabling Positive and Reversible Modulation of Emissivity and Temperature

Author:

Huang Jingkai123,Yuan Liming12,Liao Jianming123,Wang Yuetang1234,Liu Yang12,Ji Chen12,Huang Cheng123,Luo Xiangang123ORCID

Affiliation:

1. National Key Laboratory of Optical Field Manipulation Science and Technology Chinese Academy of Sciences Chengdu 610209 China

2. State Key Laboratory of Optical Technologies on Nano‐Fabrication and Micro‐Engineering Institute of Optics and Electronics Chinese Academy of Science P.O. Box 350 Chengdu 610209 China

3. College of Materials Sciences and Opto‐Electronic Technology University of Chinese Academy of Sciences Beijing 100049 China

4. School of Optoelectronic Science and Engineering University of Electronic Science and Technology of China Chengdu 610054 China

Abstract

AbstractThe ongoing advancements and growing adoption of infrared detection technology have spurred a tremendous amount of interest in thermal camouflage technology. Various approaches are employed to develop infrared camouflage materials capable of manipulating emissivity or surface temperature. However, the range of thermal radiation regulation implemented by these materials is still somewhat limited. In this paper, a combined emissivity and temperature regulation strategy that integrates a thermoelectric device (TED) and a thermochromic structure is proposed. By utilizing this strategy, it becomes possible to simultaneously control the surface temperature and the emissivity without needing additional complex excitation. As a concept demonstration, large tunabilities of 0.38 for long‐wave infrared (8–14 µm) emittance and 87 °C for surface temperature are observed, resulting in a prominent tunability of the thermal radiation temperature that is 15.4 °C greater than that of a conventional TED with constant emissivity. This work aims to introduce a new design paradigm for future thermal radiation management and camouflage techniques.

Funder

National Key Research and Development Program of China

Publisher

Wiley

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