Infrared radiation is directly related to thermal heat emission
Infrared radiation is directly coupled to thermal energy emission and transfer, as objects at elevated temperatures emit infrared waves, and infrared absorption or detection directly influences thermal states.
The retrieved papers consistently support the fundamental thermodynamic and physical relationship between infrared radiation and thermal heat emission across various applications including radiative cooling, thermal imaging, infrared thermography, and electrothermal conversion.
Sung CHJ, Hao T, Fang H, Nguyen AT, Perricone V, Yu H, Huang W, Sarmiento E, Ornelas AFD, Lublin D, Wehling R, Farajollahi S, Arakaki A, Nepal D, Lord NP, Kisailus D. Biological and Biologically Inspired Functional Nanostructures: Insights into Structural, Optical, Thermal, and Sensing Applications.. 2025. https://doi.org/10.1002/adma.202509281
Paper 0 discusses thermally regulating biological materials and their role in thermal applications.
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Dong Y, Tian B, Wang C, Zhang G, Hua F, Meng W, Li C, Yan Y, Cheng Z, Wang F. Dynamic Radiative Cooling: Mechanisms, Strategies, and Applications for Smart Thermal Management.. 2026. https://doi.org/10.1007/s40820-025-01981-0
Paper 1 reviews radiative heat transfer mechanisms and dynamic radiative thermal regulation.
Li J, Ge X, Mi J, Wang H, Chen J, He R, Zhong F, Zhan M, Hu C, Wang Z, Zhou X, Xu X, Xu Z, Martyniuk P, Rogalski A, Wang F, Wang P, Liu Z, Li Q, Li L, Hu W. Flat-band quantum materials empowering self-adapted ultrabroadband detectors.. 2025. https://doi.org/10.1038/s41467-025-63983-1
Paper 2 demonstrates how thermal management and heat localization connect to infrared bolometric responses.
Wang CW, Liang L, Zhang X, Dai M, Chen J, Liu X, Wang QJ. Mid-infrared detection through ligand-driven local heating in lanthanide-doped nanoparticles.. 2026. https://doi.org/10.1038/s41467-026-70900-7
Paper 4 highlights mid-infrared photothermal detection driven by localized heating under infrared irradiation.
Liu Z, Xiang Y, Peng Z, Jiang B. Controlled Synthesis and Infrared Emission Properties of Core-Shell TiO<sub>2</sub> Hollow Microspheres.. 2026. https://doi.org/10.3390/ma19071447
Paper 6 analyzes infrared emission properties and high emissivity linked to thermal management structures.
Sun K, Qin H, Liu M, Chen F, Cai Y, Wu P, Qiu CW, Han Z. Helicity-selective and spectrally tunable chiral thermal emissions.. 2026. https://doi.org/10.1038/s41467-026-70825-1
Paper 7 examines chiral thermal emissions and how elevated temperatures in thermal photonics produce mid-infrared radiation.
Kell DB, Pretorius E. Assessing the Health and Functionality of the Microcirculation Using Thermal Imaging.. 2026. https://doi.org/10.1002/jbio.70270
Paper 9 explains that infrared thermal imaging visualizes temperature distributions reflecting underlying heat and blood flow.
Wang SY, Wang YX, Li WZ, Li MY, Gao JY, Liu P, Zhou J, Huai X, Geng HZ. Rapid Far-Infrared Radiation and Physiotherapeutic Effects of Carbon Nanotube Flexible Thin-Film Heaters.. 2026. https://doi.org/10.3390/nano16090539
Paper 10 demonstrates that carbon nanotube film heaters emit far-infrared radiation upon electrical excitation and thermal conversion.
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