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基于柔性 VO₂/石墨烯/CNT 薄膜的快速自适应热伪装。

Fast Adaptive Thermal Camouflage Based on Flexible VO₂/Graphene/CNT Thin Films.

机构信息

Qian Xuesen Laboratory of Space Technology, China Academy of Space Technology , Beijing 100094, China.

State Key Laboratory of Low-Dimensional Quantum Physics, Department of Physics and Tsinghua-Foxconn Nanotechnology Research Center, Tsinghua University , Beijing 100084, China.

出版信息

Nano Lett. 2015 Dec 9;15(12):8365-70. doi: 10.1021/acs.nanolett.5b04090. Epub 2015 Nov 30.

Abstract

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.

摘要

热成像中的自适应伪装,作为一种能够与周围环境自然融合的伪装技术,在过去几十年中一直是一个巨大的挑战。与仅仅依靠耗散大量多余热量的温度控制相比,用于热伪装的发射率工程被认为是一种更有前途的方法。然而,具有主动调制发射率的实用设备尚未得到很好的探索。在这封信中,我们展示了一种能够有效控制热辐射的主动伪装设备,该设备由一层具有负微分热发射率的二氧化钒 (VO2) 层组成,涂覆在石墨烯/碳纳米管 (CNT) 薄膜上。轻微的焦耳加热会使器件的发射率发生剧烈变化,从而以低功耗实现快速可切换的热伪装,具有出色的可靠性。相信该设备不仅将在用于红外伪装或隐身的人工系统中得到广泛应用,而且还将在节能智能窗和热光调制器中得到广泛应用。

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