伪装
发射率
掩蔽
材料科学
石墨烯
碳纳米管
光辉
光电子学
焦耳加热
光学工程
热的
纳米技术
光学
超材料
复合材料
计算机科学
物理
气象学
人工智能
作者
Lin Xiao,He Ma,Junku Liu,Wei Zhao,Yi Jia,Qiang Zhao,Kai Liu,Yang Wu,Wei Yang,Shoushan Fan,Kaili Jiang
出处
期刊:Nano Letters
[American Chemical Society]
日期:2015-11-24
卷期号:15 (12): 8365-8370
被引量:333
标识
DOI:10.1021/acs.nanolett.5b04090
摘要
Adaptive camouflage in thermal imaging, a form of cloaking technology capable of blending naturally into the surrounding environment, has been a great challenge in the past decades. Emissivity engineering for thermal camouflage is regarded as a more promising way compared to merely temperature controlling that has to dissipate a large amount of excessive heat. However, practical devices with an active modulation of emissivity have yet to be well explored. In this letter we demonstrate an active cloaking device capable of efficient thermal radiance control, which consists of a vanadium dioxide (VO2) layer, with a negative differential thermal emissivity, coated on a graphene/carbon nanotube (CNT) thin film. A slight joule heating drastically changes the emissivity of the device, achieving rapid switchable thermal camouflage with a low power consumption and excellent reliability. It is believed that this device will find wide applications not only in artificial systems for infrared camouflage or cloaking but also in energy-saving smart windows and thermo-optical modulators.
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