Production and Mechanical Characterization of Graphene Micro-Ribbons
Patterning of graphene into micro- and nano-ribbons allows for tunability in emerging fields such as flexible electronic and optoelectronic devices, and is gaining interest for the production of more efficient reinforcement for composite materials. In this work we fabricate micro-ribbons from graphe...
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doaj-ffbc8138c48145febb275a49fbac93d42020-11-24T21:44:27ZengMDPI AGJournal of Composites Science2504-477X2019-04-01324210.3390/jcs3020042jcs3020042Production and Mechanical Characterization of Graphene Micro-RibbonsMaria Giovanna Pastore Carbone0Georgia Tsoukleri1Anastasios C. Manikas2Eleni Makarona3Christos Tsamis4Costas Galiotis5Institute of Chemical Engineering Sciences, Foundation of Research and Technology-Hellas (FORTH/ICE-HT), Stadiou Street, Platani, 26504 Patras, GreeceInstitute of Chemical Engineering Sciences, Foundation of Research and Technology-Hellas (FORTH/ICE-HT), Stadiou Street, Platani, 26504 Patras, GreeceInstitute of Chemical Engineering Sciences, Foundation of Research and Technology-Hellas (FORTH/ICE-HT), Stadiou Street, Platani, 26504 Patras, GreeceInstitute of Nanoscience and Nanotechnology, National Center for Scientific Research “Demokritos”, 15310 Athens, GreeceInstitute of Nanoscience and Nanotechnology, National Center for Scientific Research “Demokritos”, 15310 Athens, GreeceInstitute of Chemical Engineering Sciences, Foundation of Research and Technology-Hellas (FORTH/ICE-HT), Stadiou Street, Platani, 26504 Patras, GreecePatterning of graphene into micro- and nano-ribbons allows for tunability in emerging fields such as flexible electronic and optoelectronic devices, and is gaining interest for the production of more efficient reinforcement for composite materials. In this work we fabricate micro-ribbons from graphene synthesized via chemical vapor deposition (CVD) by combining ultraviolet (UV) photolithography and dry etching oxygen plasma treatments. We used Raman spectral imaging to confirm the effectiveness of the patterning procedure, which is suitable for large-area patterning of graphene on wafer-scale, and confirms that the quality of graphene remains unaltered. The produced micro-ribbons were finally transferred and embedded into a polymeric matrix and the mechanical response was investigated by in-situ mechanical investigation combining Raman spectroscopy and tensile/compressive tests.https://www.mdpi.com/2504-477X/3/2/42graphenemicro-ribbonultraviolet (UV) lithographymechanical propertiesRaman spectroscopy |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Maria Giovanna Pastore Carbone Georgia Tsoukleri Anastasios C. Manikas Eleni Makarona Christos Tsamis Costas Galiotis |
spellingShingle |
Maria Giovanna Pastore Carbone Georgia Tsoukleri Anastasios C. Manikas Eleni Makarona Christos Tsamis Costas Galiotis Production and Mechanical Characterization of Graphene Micro-Ribbons Journal of Composites Science graphene micro-ribbon ultraviolet (UV) lithography mechanical properties Raman spectroscopy |
author_facet |
Maria Giovanna Pastore Carbone Georgia Tsoukleri Anastasios C. Manikas Eleni Makarona Christos Tsamis Costas Galiotis |
author_sort |
Maria Giovanna Pastore Carbone |
title |
Production and Mechanical Characterization of Graphene Micro-Ribbons |
title_short |
Production and Mechanical Characterization of Graphene Micro-Ribbons |
title_full |
Production and Mechanical Characterization of Graphene Micro-Ribbons |
title_fullStr |
Production and Mechanical Characterization of Graphene Micro-Ribbons |
title_full_unstemmed |
Production and Mechanical Characterization of Graphene Micro-Ribbons |
title_sort |
production and mechanical characterization of graphene micro-ribbons |
publisher |
MDPI AG |
series |
Journal of Composites Science |
issn |
2504-477X |
publishDate |
2019-04-01 |
description |
Patterning of graphene into micro- and nano-ribbons allows for tunability in emerging fields such as flexible electronic and optoelectronic devices, and is gaining interest for the production of more efficient reinforcement for composite materials. In this work we fabricate micro-ribbons from graphene synthesized via chemical vapor deposition (CVD) by combining ultraviolet (UV) photolithography and dry etching oxygen plasma treatments. We used Raman spectral imaging to confirm the effectiveness of the patterning procedure, which is suitable for large-area patterning of graphene on wafer-scale, and confirms that the quality of graphene remains unaltered. The produced micro-ribbons were finally transferred and embedded into a polymeric matrix and the mechanical response was investigated by in-situ mechanical investigation combining Raman spectroscopy and tensile/compressive tests. |
topic |
graphene micro-ribbon ultraviolet (UV) lithography mechanical properties Raman spectroscopy |
url |
https://www.mdpi.com/2504-477X/3/2/42 |
work_keys_str_mv |
AT mariagiovannapastorecarbone productionandmechanicalcharacterizationofgraphenemicroribbons AT georgiatsoukleri productionandmechanicalcharacterizationofgraphenemicroribbons AT anastasioscmanikas productionandmechanicalcharacterizationofgraphenemicroribbons AT elenimakarona productionandmechanicalcharacterizationofgraphenemicroribbons AT christostsamis productionandmechanicalcharacterizationofgraphenemicroribbons AT costasgaliotis productionandmechanicalcharacterizationofgraphenemicroribbons |
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