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Graphene Hybrid Metasurfaces for Mid-Infrared Molecular Sensors

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Graphene_Hybrid_Metasurfaces_for_MidInfrared_Molecular_Sensors_Yager_etal_Nanomaterials_2023.pdf (3.439Mb)
Author
Yager, Tom
Chikvaidze, George
Wang, Qin
Fu, Ying
Date
2023
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Abstract
We integrated graphene with asymmetric metal metasurfaces and optimised the geometry dependent photoresponse towards optoelectronic molecular sensor devices. Through careful tuning and characterisation, combining finite-difference time-domain simulations, electron-beam lithography-based nanofabrication, and micro-Fourier transform infrared spectroscopy, we achieved precise control over the mid-infrared peak response wavelengths, transmittance, and reflectance. Our methods enabled simple, reproducible and targeted mid-infrared molecular sensing over a wide range of geometrical parameters. With ultimate minimization potential down to atomic thicknesses and a diverse range of complimentary nanomaterial combinations, we anticipate a high impact potential of these technologies for environmental monitoring, threat detection, and point of care diagnostics. © 2023 by the authors. --//-- Yager T., Chikvaidze G., Wang Q., Fu Y.; Graphene Hybrid Metasurfaces for Mid-Infrared Molecular Sensors; (2023) Nanomaterials, 13 (14), art. no. 2113; DOI: 10.3390/nano13142113. Published under the CC BY 4.0 licence.
URI
https://www.mdpi.com/2079-4991/13/14/2113
https://dspace.lu.lv/dspace/handle/7/64943
DOI
10.3390/nano13142113
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  • Zinātniskie raksti (CFI) / Scientific articles [604]

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