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Get Free AccessOptical 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.
M. Said Ergoktas, Gökhan Bakan, Evgeniya Kovalska, Lewis W. Le Fevre, Richard Fields, Pietro Steiner, Xiaoxiao Yu, Ömer Salihoglu, Sinan Balci, Vladimir I. Fal’ko, Konstantin ‘kostya’ Novoselov, Robert A. W. Dryfe, Coşkun Kocabaş (2021). Multispectral Electro-Optical Surfaces: from Visible to Microwave. Applied Physics, pp. 1-14
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Type
Article
Year
2021
Authors
13
Datasets
0
Total Files
0
Language
English
Journal
Applied Physics
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