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Manipulating metals for adaptive thermal camouflage

机译:操纵自适应热伪装的金属

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Many species in nature have evolved remarkable strategies to visually adapt to the surroundings for the purpose of protection and predation. Similarly, acquiring the capabilities of adaptively camouflaging in the infrared (IR) spectrum has emerged as an intriguing but highly challenging technology in recent years. Here, we report adaptive thermal camouflage devices by bridging the optical and radiative properties of nanoscopic platinum (Pt) films and silver (Ag) electrodeposited Pt films. Specifically, these metal-based devices have large, uniform, and consistent IR tunabilities in mid-wave IR (MWIR) and long-wave IR (LWIR) atmospheric transmission windows (ATWs). Furthermore, these devices can be easily multiplexed, enlarged, applied to rough and flexible substrates, or colored, demonstrating their multiple adaptive camouflaging capabilities. We believe that this technology will be advantageous not only in various adaptive camouflage platforms but also in many thermal radiation management–related technologies.
机译:许多物种在大自然中已经进化了显着的策略,以便在视觉上适应周围环境以保护和捕食。同样,近年来,获得了在红外(IR)谱中自适应伪装的能力被出现为一种有趣但高度挑战的技术。这里,我们通过桥接纳米镜铂(Pt)膜和银(Ag)电沉积Pt膜的光学和辐射性能来报告自适应热伪装装置。具体地,这些基于金属的装置在中波IR(MWIR)和长波IR(LWIR)大气传输窗口(ATW)中具有大,均匀,均匀的IR可爱。此外,这些装置可以容易地复用,扩大,施加到粗糙和柔性的基板或有色,证明其多个自适应伪装能力。我们认为,这项技术不仅在各种自适应伪装平台上也是有利的,而且在许多热辐射管理相关技术中是有利的。

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