Reconfigurable and optically transparent microwave absorbers based on deep eutectic solvent-gated graphene
Abstract Electrolytically tunable graphene “building blocks” for reconfigurable and optically transparent microwave surfaces and absorbers have been designed and fabricated by exploiting Deep Eutectic Solvents (DESs). DESs have been first explored as electrolytic and environmentally friendly media f...
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doaj-f0ce391544794223a4987435a8a3485a2020-12-08T07:11:09ZengNature Publishing GroupScientific Reports2045-23222019-04-01911910.1038/s41598-019-41806-wReconfigurable and optically transparent microwave absorbers based on deep eutectic solvent-gated grapheneMarco Grande0Giuseppe Valerio Bianco1Filippo Maria Perna2Vito Capriati3Pio Capezzuto4Michael Scalora5Giovanni Bruno6Antonella D’Orazio7Dipartimento di Ingegneria Elettrica e dell’Informazione, Politecnico di BariIstituto di Nanotecnologia – CNR-NANOTECDipartimento di Farmacia-Scienze del Farmaco, Università di Bari “Aldo Moro”, Consorzio C.I.N.M.P.I.S.Dipartimento di Farmacia-Scienze del Farmaco, Università di Bari “Aldo Moro”, Consorzio C.I.N.M.P.I.S.Istituto di Nanotecnologia – CNR-NANOTECCharles M. Bowden Research Center, RDECOM, Redstone ArsenalIstituto di Nanotecnologia – CNR-NANOTECDipartimento di Ingegneria Elettrica e dell’Informazione, Politecnico di BariAbstract Electrolytically tunable graphene “building blocks” for reconfigurable and optically transparent microwave surfaces and absorbers have been designed and fabricated by exploiting Deep Eutectic Solvents (DESs). DESs have been first explored as electrolytic and environmentally friendly media for tuning sheet resistance and Fermi level of graphene together with its microwave response (reflection, transmission and absorption). We consider the tunability of the reconfigurable surfaces in terms of transmittance, absorption and reflectance, respectively, over the X and Ku bands when the gate voltage is varied in the −1.4/+1.4 V range. The numerical simulations and experimental measurements also show the ability of the absorber, in the Salisbury screen configuration, to achieve near perfect absorption with a modulation of about 20%. These results could find applications in several technological fields, ranging from electromagnetic pollution to integrated multi-physical regulation systems, thereby helping the advance of the performance of microwave cloaking systems, stealth windows, frequency selective surfaces, modulators and polarizers.https://doi.org/10.1038/s41598-019-41806-w |
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DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Marco Grande Giuseppe Valerio Bianco Filippo Maria Perna Vito Capriati Pio Capezzuto Michael Scalora Giovanni Bruno Antonella D’Orazio |
spellingShingle |
Marco Grande Giuseppe Valerio Bianco Filippo Maria Perna Vito Capriati Pio Capezzuto Michael Scalora Giovanni Bruno Antonella D’Orazio Reconfigurable and optically transparent microwave absorbers based on deep eutectic solvent-gated graphene Scientific Reports |
author_facet |
Marco Grande Giuseppe Valerio Bianco Filippo Maria Perna Vito Capriati Pio Capezzuto Michael Scalora Giovanni Bruno Antonella D’Orazio |
author_sort |
Marco Grande |
title |
Reconfigurable and optically transparent microwave absorbers based on deep eutectic solvent-gated graphene |
title_short |
Reconfigurable and optically transparent microwave absorbers based on deep eutectic solvent-gated graphene |
title_full |
Reconfigurable and optically transparent microwave absorbers based on deep eutectic solvent-gated graphene |
title_fullStr |
Reconfigurable and optically transparent microwave absorbers based on deep eutectic solvent-gated graphene |
title_full_unstemmed |
Reconfigurable and optically transparent microwave absorbers based on deep eutectic solvent-gated graphene |
title_sort |
reconfigurable and optically transparent microwave absorbers based on deep eutectic solvent-gated graphene |
publisher |
Nature Publishing Group |
series |
Scientific Reports |
issn |
2045-2322 |
publishDate |
2019-04-01 |
description |
Abstract Electrolytically tunable graphene “building blocks” for reconfigurable and optically transparent microwave surfaces and absorbers have been designed and fabricated by exploiting Deep Eutectic Solvents (DESs). DESs have been first explored as electrolytic and environmentally friendly media for tuning sheet resistance and Fermi level of graphene together with its microwave response (reflection, transmission and absorption). We consider the tunability of the reconfigurable surfaces in terms of transmittance, absorption and reflectance, respectively, over the X and Ku bands when the gate voltage is varied in the −1.4/+1.4 V range. The numerical simulations and experimental measurements also show the ability of the absorber, in the Salisbury screen configuration, to achieve near perfect absorption with a modulation of about 20%. These results could find applications in several technological fields, ranging from electromagnetic pollution to integrated multi-physical regulation systems, thereby helping the advance of the performance of microwave cloaking systems, stealth windows, frequency selective surfaces, modulators and polarizers. |
url |
https://doi.org/10.1038/s41598-019-41806-w |
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