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Oxide-assisted growth of scalable single-crystalline graphene with seamlessly stitched millimeter-sized domains on commercial copper foils

Chemical vapor deposition (CVD) is considered as an effective route to obtain large-area and high-quality polycrystalline graphene; however, there are still technological challenges associated with its application to achieve single crystals of graphene. Herein, we present the CVD growth of scalable...

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Autores principales: Wang, Yang, Cheng, Yu, Wang, Yunlu, Zhang, Shuai, Zhang, Xuewei, Yin, Shaoqian, Wang, Miao, Xia, Yang, Li, Qunyang, Zhao, Pei, Wang, Hongtao
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9078575/
https://www.ncbi.nlm.nih.gov/pubmed/35539852
http://dx.doi.org/10.1039/c8ra00770e
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author Wang, Yang
Cheng, Yu
Wang, Yunlu
Zhang, Shuai
Zhang, Xuewei
Yin, Shaoqian
Wang, Miao
Xia, Yang
Li, Qunyang
Zhao, Pei
Wang, Hongtao
author_facet Wang, Yang
Cheng, Yu
Wang, Yunlu
Zhang, Shuai
Zhang, Xuewei
Yin, Shaoqian
Wang, Miao
Xia, Yang
Li, Qunyang
Zhao, Pei
Wang, Hongtao
author_sort Wang, Yang
collection PubMed
description Chemical vapor deposition (CVD) is considered as an effective route to obtain large-area and high-quality polycrystalline graphene; however, there are still technological challenges associated with its application to achieve single crystals of graphene. Herein, we present the CVD growth of scalable single-crystalline graphene by seamless stitching millimeter-sized unidirectional aligned hexagonal domains using different types of commercial Cu foils without repeated substrate polishing and H(2)-annealing processes. Compared with that reported in previous studies, herein, the average size for the hexagonal graphene domains is enlarged by 1–2 orders of magnitude (from tens of micrometers to millimeter). The key factor for growth is the Cu surface monocrystallization achieved by a pre-introduced oxide layer and the sequential Ar annealing. The graphene domains exhibit an average growth rate of >20 μm min(−1) and a misorientation possibility of <2%, and seamless stitching at the domain coalescence interfaces is confirmed by atomic force microscopy measurements.
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spelling pubmed-90785752022-05-09 Oxide-assisted growth of scalable single-crystalline graphene with seamlessly stitched millimeter-sized domains on commercial copper foils Wang, Yang Cheng, Yu Wang, Yunlu Zhang, Shuai Zhang, Xuewei Yin, Shaoqian Wang, Miao Xia, Yang Li, Qunyang Zhao, Pei Wang, Hongtao RSC Adv Chemistry Chemical vapor deposition (CVD) is considered as an effective route to obtain large-area and high-quality polycrystalline graphene; however, there are still technological challenges associated with its application to achieve single crystals of graphene. Herein, we present the CVD growth of scalable single-crystalline graphene by seamless stitching millimeter-sized unidirectional aligned hexagonal domains using different types of commercial Cu foils without repeated substrate polishing and H(2)-annealing processes. Compared with that reported in previous studies, herein, the average size for the hexagonal graphene domains is enlarged by 1–2 orders of magnitude (from tens of micrometers to millimeter). The key factor for growth is the Cu surface monocrystallization achieved by a pre-introduced oxide layer and the sequential Ar annealing. The graphene domains exhibit an average growth rate of >20 μm min(−1) and a misorientation possibility of <2%, and seamless stitching at the domain coalescence interfaces is confirmed by atomic force microscopy measurements. The Royal Society of Chemistry 2018-02-26 /pmc/articles/PMC9078575/ /pubmed/35539852 http://dx.doi.org/10.1039/c8ra00770e Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Wang, Yang
Cheng, Yu
Wang, Yunlu
Zhang, Shuai
Zhang, Xuewei
Yin, Shaoqian
Wang, Miao
Xia, Yang
Li, Qunyang
Zhao, Pei
Wang, Hongtao
Oxide-assisted growth of scalable single-crystalline graphene with seamlessly stitched millimeter-sized domains on commercial copper foils
title Oxide-assisted growth of scalable single-crystalline graphene with seamlessly stitched millimeter-sized domains on commercial copper foils
title_full Oxide-assisted growth of scalable single-crystalline graphene with seamlessly stitched millimeter-sized domains on commercial copper foils
title_fullStr Oxide-assisted growth of scalable single-crystalline graphene with seamlessly stitched millimeter-sized domains on commercial copper foils
title_full_unstemmed Oxide-assisted growth of scalable single-crystalline graphene with seamlessly stitched millimeter-sized domains on commercial copper foils
title_short Oxide-assisted growth of scalable single-crystalline graphene with seamlessly stitched millimeter-sized domains on commercial copper foils
title_sort oxide-assisted growth of scalable single-crystalline graphene with seamlessly stitched millimeter-sized domains on commercial copper foils
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9078575/
https://www.ncbi.nlm.nih.gov/pubmed/35539852
http://dx.doi.org/10.1039/c8ra00770e
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