Publication | Open Access
Manipulating metals for adaptive thermal camouflage
293
Citations
48
References
2020
Year
Optical MaterialsEngineeringChemistryOptical PropertiesInfrared OpticNanophotonicsPlasmonic MaterialMaterials ScienceNanotechnologyMetallurgical InteractionElemental MetalAdaptive Thermal CamouflagePlasmonic CatalysisInfrared SensorNanoscopic PlatinumSurface ScienceApplied PhysicsPt FilmsConsistent Ir Tunabilities
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.
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