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Chemical Vapor Deposition of N-Doped Graphene through Pre-Implantation of Nitrogen Ions for Long-Term Protection of Copper

Nitrogen-doped graphene (NG) was synthesized through the chemical vapor deposition (CVD) of graphene on Cu substrates, which were pre-implanted with N ions by the ion implantation method. The pre-implanted N ions in the Cu substrate could dope graphene by the substitution of C atoms during the CVD g...

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Autores principales: Han, Luoqiao, Dong, Lei, Chen, Haiyan, Yang, Shuai, Yuan, Aiheng, Guan, Ran, Yan, Hong, Wu, Jing, Zhang, Bo, Li, Dejun, Luo, Birong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8269794/
https://www.ncbi.nlm.nih.gov/pubmed/34279322
http://dx.doi.org/10.3390/ma14133751
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author Han, Luoqiao
Dong, Lei
Chen, Haiyan
Yang, Shuai
Yuan, Aiheng
Guan, Ran
Yan, Hong
Wu, Jing
Zhang, Bo
Li, Dejun
Luo, Birong
author_facet Han, Luoqiao
Dong, Lei
Chen, Haiyan
Yang, Shuai
Yuan, Aiheng
Guan, Ran
Yan, Hong
Wu, Jing
Zhang, Bo
Li, Dejun
Luo, Birong
author_sort Han, Luoqiao
collection PubMed
description Nitrogen-doped graphene (NG) was synthesized through the chemical vapor deposition (CVD) of graphene on Cu substrates, which were pre-implanted with N ions by the ion implantation method. The pre-implanted N ions in the Cu substrate could dope graphene by the substitution of C atoms during the CVD growth of graphene, forming NG. Based on this, NG’s long-term protection properties for Cu were evaluated by ambient exposure for a corrosion test. The results showed that NG can obviously reduce the natural oxidation of Cu in the long-term exposure compared with the case of pristine graphene (PG) coated on Cu. Moreover, with the increase in pre-implanted N dose, the formed NG’s long-term protection for Cu improved. This indicates that the modification of graphene by N doping is an effective way to improve the corrosion resistance of the PG coating owing to the reduction in its conductivity, which would inhibit galvanic corrosion by cutting off electron transport across the interface in their long-term protection. These findings provide insight into corrosion mechanisms of the graphene coating and correlate with its conductive nature based on heteroatoms doping, which is a potential route for improving the corrosion resistance of graphene as an effective barrier coating for metals.
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spelling pubmed-82697942021-07-10 Chemical Vapor Deposition of N-Doped Graphene through Pre-Implantation of Nitrogen Ions for Long-Term Protection of Copper Han, Luoqiao Dong, Lei Chen, Haiyan Yang, Shuai Yuan, Aiheng Guan, Ran Yan, Hong Wu, Jing Zhang, Bo Li, Dejun Luo, Birong Materials (Basel) Article Nitrogen-doped graphene (NG) was synthesized through the chemical vapor deposition (CVD) of graphene on Cu substrates, which were pre-implanted with N ions by the ion implantation method. The pre-implanted N ions in the Cu substrate could dope graphene by the substitution of C atoms during the CVD growth of graphene, forming NG. Based on this, NG’s long-term protection properties for Cu were evaluated by ambient exposure for a corrosion test. The results showed that NG can obviously reduce the natural oxidation of Cu in the long-term exposure compared with the case of pristine graphene (PG) coated on Cu. Moreover, with the increase in pre-implanted N dose, the formed NG’s long-term protection for Cu improved. This indicates that the modification of graphene by N doping is an effective way to improve the corrosion resistance of the PG coating owing to the reduction in its conductivity, which would inhibit galvanic corrosion by cutting off electron transport across the interface in their long-term protection. These findings provide insight into corrosion mechanisms of the graphene coating and correlate with its conductive nature based on heteroatoms doping, which is a potential route for improving the corrosion resistance of graphene as an effective barrier coating for metals. MDPI 2021-07-05 /pmc/articles/PMC8269794/ /pubmed/34279322 http://dx.doi.org/10.3390/ma14133751 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Han, Luoqiao
Dong, Lei
Chen, Haiyan
Yang, Shuai
Yuan, Aiheng
Guan, Ran
Yan, Hong
Wu, Jing
Zhang, Bo
Li, Dejun
Luo, Birong
Chemical Vapor Deposition of N-Doped Graphene through Pre-Implantation of Nitrogen Ions for Long-Term Protection of Copper
title Chemical Vapor Deposition of N-Doped Graphene through Pre-Implantation of Nitrogen Ions for Long-Term Protection of Copper
title_full Chemical Vapor Deposition of N-Doped Graphene through Pre-Implantation of Nitrogen Ions for Long-Term Protection of Copper
title_fullStr Chemical Vapor Deposition of N-Doped Graphene through Pre-Implantation of Nitrogen Ions for Long-Term Protection of Copper
title_full_unstemmed Chemical Vapor Deposition of N-Doped Graphene through Pre-Implantation of Nitrogen Ions for Long-Term Protection of Copper
title_short Chemical Vapor Deposition of N-Doped Graphene through Pre-Implantation of Nitrogen Ions for Long-Term Protection of Copper
title_sort chemical vapor deposition of n-doped graphene through pre-implantation of nitrogen ions for long-term protection of copper
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8269794/
https://www.ncbi.nlm.nih.gov/pubmed/34279322
http://dx.doi.org/10.3390/ma14133751
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