伪装
材料科学
共晶体系
能量收集
红外线的
光电子学
纳米技术
热电效应
能量(信号处理)
热电冷却
作者
Zechang Wei,Min Seok Kim,Zhen Yu,Chenyang Cai,Mengjuan Zhou,Jiang Wang,Hong Lei,Haojie Lü,Yaoxin Zhang,Yu Fu,Young Min Song,Swee Ching Tan
标识
DOI:10.1038/s41467-026-74580-1
摘要
Integrated infrared camouflage materials capable of energy harvesting and sensing hold great potential for enhancing operational efficiency in military settings. A key challenge, however, lies in achieving such multifunctionality without complex fabrication processes. In this study, we address this issue by introducing eutectic gallium‑indium (EGaIn) as a versatile material that combines infrared camouflage with thermoelectric sensing. EGaIn exhibits remarkable infrared camouflage performance over a broad temperature range. It suppresses its own thermal radiation by reflecting ambient infrared radiation, concealing its infrared signature for infrared camouflage. In addition to its infrared camouflage function, one of the most notable features of EGaIn is its ability to generate voltage from small temperature gradients. This thermoelectric capability enables self‑powered, real‑time monitoring of physiological states like body temperature and breathing patterns. Our work highlights the pathways toward military technologies that combine infrared camouflage with signal transmission capabilities. Eutectic gallium indium is proposed to address the challenge of integrating infrared camouflage with self-powered thermoelectric sensing, enabling simultaneous concealment of thermal signatures and real-time physiological monitoring without complex fabrication.
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