High Temperature Growth of Graphene from Cobalt Volume: Effect on Structural Properties

Several transition metals other than the largely used Cu and Ni can be, in principle, employed to catalyze carbon precursors for the chemical vapor deposition of graphene, because the thermodynamics of their alloying with carbon is well known. For example, the wealth of information in the Co-C phase...

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Main Author: Giampiero Amato
Format: Article
Language:English
Published: MDPI AG 2018-02-01
Series:Materials
Subjects:
Online Access:http://www.mdpi.com/1996-1944/11/2/257
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spelling doaj-5c616f5d58894166b9b656b5e8b209b72020-11-24T22:56:06ZengMDPI AGMaterials1996-19442018-02-0111225710.3390/ma11020257ma11020257High Temperature Growth of Graphene from Cobalt Volume: Effect on Structural PropertiesGiampiero Amato0The Quantum Research Laboratory, INRIM, Strada delle Cacce 91, 10135 Torino, ItalySeveral transition metals other than the largely used Cu and Ni can be, in principle, employed to catalyze carbon precursors for the chemical vapor deposition of graphene, because the thermodynamics of their alloying with carbon is well known. For example, the wealth of information in the Co-C phase diagram can be used to predict the properties of graphene grown in this way. It is, in fact, expected that growth occurs at a temperature higher than in Ni, with beneficial consequences to the mechanical and electronic properties of the final product. In this work, the growth of graphene onto Co film is presented together with an extensive Raman characterization of the structural properties of the material so far obtained. Previous results reporting the full coverage with negligible defective areas, in spite of discontinuities in the underlying metal, are confirmed, together with the occurrence of strain in the graphene sheet. Strain is deeply investigated in this work, in view of possible employment in engineering the material properties. The observed strain is ascribed to the high thermal mismatch with the substrate, even if an effect of the crystallographic transition of Co cannot be excluded.http://www.mdpi.com/1996-1944/11/2/257graphenecarbon precipitationRaman spectroscopystrain
collection DOAJ
language English
format Article
sources DOAJ
author Giampiero Amato
spellingShingle Giampiero Amato
High Temperature Growth of Graphene from Cobalt Volume: Effect on Structural Properties
Materials
graphene
carbon precipitation
Raman spectroscopy
strain
author_facet Giampiero Amato
author_sort Giampiero Amato
title High Temperature Growth of Graphene from Cobalt Volume: Effect on Structural Properties
title_short High Temperature Growth of Graphene from Cobalt Volume: Effect on Structural Properties
title_full High Temperature Growth of Graphene from Cobalt Volume: Effect on Structural Properties
title_fullStr High Temperature Growth of Graphene from Cobalt Volume: Effect on Structural Properties
title_full_unstemmed High Temperature Growth of Graphene from Cobalt Volume: Effect on Structural Properties
title_sort high temperature growth of graphene from cobalt volume: effect on structural properties
publisher MDPI AG
series Materials
issn 1996-1944
publishDate 2018-02-01
description Several transition metals other than the largely used Cu and Ni can be, in principle, employed to catalyze carbon precursors for the chemical vapor deposition of graphene, because the thermodynamics of their alloying with carbon is well known. For example, the wealth of information in the Co-C phase diagram can be used to predict the properties of graphene grown in this way. It is, in fact, expected that growth occurs at a temperature higher than in Ni, with beneficial consequences to the mechanical and electronic properties of the final product. In this work, the growth of graphene onto Co film is presented together with an extensive Raman characterization of the structural properties of the material so far obtained. Previous results reporting the full coverage with negligible defective areas, in spite of discontinuities in the underlying metal, are confirmed, together with the occurrence of strain in the graphene sheet. Strain is deeply investigated in this work, in view of possible employment in engineering the material properties. The observed strain is ascribed to the high thermal mismatch with the substrate, even if an effect of the crystallographic transition of Co cannot be excluded.
topic graphene
carbon precipitation
Raman spectroscopy
strain
url http://www.mdpi.com/1996-1944/11/2/257
work_keys_str_mv AT giampieroamato hightemperaturegrowthofgraphenefromcobaltvolumeeffectonstructuralproperties
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