发射率
红外线的
伪装
多光谱图像
低发射率
材料科学
光电子学
光学
遥感
计算机科学
物理
地质学
人工智能
作者
Yan Jia,Dongqing Liu,Desui Chen,Yizheng Jin,Chen Chen,Jundong Tao,Haifeng Cheng,Shen Zhou,Baizhang Cheng,Xin-Fei Wang,Zhen Meng,Tianwen Liu
标识
DOI:10.1038/s41467-023-40902-w
摘要
Dynamic infrared emissivity regulators, which can efficiently modulate infrared radiation beyond vision, have emerged as an attractive technology in the energy and information fields. The realization of the independent modulation of visible and infrared spectra is a challenging and important task for the application of dynamic infrared emissivity regulators in the fields of smart thermal management and multispectral camouflage. Here, we demonstrate an electrically controlled infrared emissivity regulator that can achieve independent modulation of the infrared emissivity while maintaining a high visible transparency (84.7% at 400-760 nm). The regulators show high degree of emissivity regulation (0.51 at 3-5 μm, 0.41 at 7.5-13 μm), fast response ( < 600 ms), and long cycle life ( > 104 cycles). The infrared emissivity regulation is attributed to the modification of the carrier concentration in the surface depletion layer of aluminum-doped zinc oxide nanocrystals. This transparent infrared emissivity regulator provides opportunities for applications such as on-demand smart thermal management, multispectral displays, and adaptive camouflage.
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