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(Reference retrieved automatically from Web of Science through information on FAPESP grant and its corresponding number as mentioned in the publication by the authors.)

Enhancing the electromagnetic interference shielding of flexible films with reduced graphene oxide-based coatings

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Author(s):
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Godoy, Anna Paula [1] ; Amurim, Leice G. [1] ; Mendes, Alexandre [1] ; Goncalves, Emerson S. [2, 3] ; Ferreira, Anderson [2] ; de Andrade, Carolina Santos [1] ; Kotsilkova, Rumiana [4] ; Ivanov, Evgeni [4, 5] ; Lavorgna, Marino [6] ; Saito, Lucia A. M. [1] ; Ribeiro, Helio [1] ; Andrade, Ricardo J. E. [1]
Total Authors: 12
Affiliation:
[1] Mackgraphe Mackenzie Inst Res Graphene & Nanotech, Inst Presbiteriano Mackenzie SP, Rua Consolacao 896, BR-01302907 Sao Paulo, SP - Brazil
[2] Aeronaut & Space Inst, Phys Chem Characterizat Lab, Mat Div, Praca Marechal Eduardo Gomes, BR-12228904 Sao Jose Dos Campos, SP - Brazil
[3] Aeronaut Technol Inst ITA, Praca Marechal Eduardo Gomes, BR-12228900 Sao Jose Dos Campos, SP - Brazil
[4] Bulgarian Acad Sci, Open Lab Expt Micro & Nano Mech, Inst Mech, Acad G Bonchev Str, Block 4, Sofia - Bulgaria
[5] NanoTech Lab Ltd, Res & Dev Nanomat & Nanotechnol, Acad G Bonchev Str, Block 4, Sofia 1113 - Bulgaria
[6] CNR, Inst Polymers Composites & Biomat, Piazzale Fermi 1, I-80055 Naples - Italy
Total Affiliations: 6
Document type: Journal article
Source: Progress in Organic Coatings; v. 158, SEP 2021.
Web of Science Citations: 0
Abstract

Herein, it was investigated the development of a low-cost conductive coating for application in the field of Electromagnetic Interference shielding (EMI shielding). The coating was produced with reduced graphene oxide (rGO), considered an excellent technological alternative for graphene applications, and styrene-ethylene/ butylene-styrene (SEBS) block copolymer. The rGO was obtained by reduction of graphene oxide (GO) using ascorbic acid as a ``green{''} and efficient reducing agent, and Raman spectroscopy results indicated that the reduction of GO was successfully reached. Firstly, polymeric substrates were covered with coatings containing 2% (v/v) of rGO to evaluate the electrical conductivity and electromagnetic shielding effectiveness of transmission (SET). With the best SET value achieved, the block copolymer SEBS was added to the rGO coating to improve its adhesion over the substrate. Electrical conductivity and SET of these samples were measured by Impedance Spectroscopy and EMI Shielding analysis, with the later performed within the 10 GHz frequency band (X band), required for radar, telecommunication and military applications. With attenuation of the electromagnetic waves around 20 dB, this new route/technique can be used to improve the shielding effectiveness of flexible films by rGO coating, for wide range technological sectors. (AU)

FAPESP's process: 12/50259-8 - Graphene: photonics and opto-electronics: UPM-NUS collaboration
Grantee:Antonio Helio de Castro Neto
Support Opportunities: Research Projects - SPEC Program
FAPESP's process: 17/07244-3 - Graphene-based polymer nanocomposites for application in optical communications
Grantee:Leice Gonçalves Amurin
Support Opportunities: Scholarships in Brazil - Post-Doctoral