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Multispectral Electro-Optical Surfaces: from Visible to Microwave

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arxiv 2007.08385 v1 pith:3V5RKSQN submitted 2020-07-16 physics.app-ph physics.optics

classification physics.app-phphysics.optics
keywords deviceselectro-opticalopticalcolour-changingdisplaymaterialsmicrowavemultispectral
verification ladder T0 review T1 audit T2 compute T3 formal
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Optical materials with colour-changing abilities have been explored for display devices, smart windows, or modulation of visual appearance. The efficiency of these materials, however, has strong wavelength dependence, which limits their functionality to a narrow spectral range. Here, we report graphene-based electro-optical devices with unprecedented optical tunability covering the entire electromagnetic spectrum from the visible to microwave. We achieve this non-volatile and reversible tunability by electro-intercalation of lithium into graphene layers in an optically accessible device structure. This unique colour-changing capability, together with area-selective intercalation, inspires fabrication of new multispectral devices, including display devices and electro-optical camouflage coating. We anticipate that these results provide realistic approaches for programmable smart optical surfaces with a potential utility in many scientific and engineering fields.

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