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Metal-induced rapid transformation of diamond into single and multilayer graphene on wafer scale
The degradation of intrinsic properties of graphene during the transfer process constitutes a major challenge in graphene device fabrication, stimulating the need for direct growth of graphene on dielectric substrates. Previous attempts of metal-induced transformation of diamond and silicon carbide...
Autores principales: | , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Nature Publishing Group
2016
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4932195/ https://www.ncbi.nlm.nih.gov/pubmed/27373740 http://dx.doi.org/10.1038/ncomms12099 |
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author | Berman, Diana Deshmukh, Sanket A. Narayanan, Badri Sankaranarayanan, Subramanian K. R. S. Yan, Zhong Balandin, Alexander A. Zinovev, Alexander Rosenmann, Daniel Sumant, Anirudha V. |
author_facet | Berman, Diana Deshmukh, Sanket A. Narayanan, Badri Sankaranarayanan, Subramanian K. R. S. Yan, Zhong Balandin, Alexander A. Zinovev, Alexander Rosenmann, Daniel Sumant, Anirudha V. |
author_sort | Berman, Diana |
collection | PubMed |
description | The degradation of intrinsic properties of graphene during the transfer process constitutes a major challenge in graphene device fabrication, stimulating the need for direct growth of graphene on dielectric substrates. Previous attempts of metal-induced transformation of diamond and silicon carbide into graphene suffers from metal contamination and inability to scale graphene growth over large area. Here, we introduce a direct approach to transform polycrystalline diamond into high-quality graphene layers on wafer scale (4 inch in diameter) using a rapid thermal annealing process facilitated by a nickel, Ni thin film catalyst on top. We show that the process can be tuned to grow single or multilayer graphene with good electronic properties. Molecular dynamics simulations elucidate the mechanism of graphene growth on polycrystalline diamond. In addition, we demonstrate the lateral growth of free-standing graphene over micron-sized pre-fabricated holes, opening exciting opportunities for future graphene/diamond-based electronics. |
format | Online Article Text |
id | pubmed-4932195 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2016 |
publisher | Nature Publishing Group |
record_format | MEDLINE/PubMed |
spelling | pubmed-49321952016-07-12 Metal-induced rapid transformation of diamond into single and multilayer graphene on wafer scale Berman, Diana Deshmukh, Sanket A. Narayanan, Badri Sankaranarayanan, Subramanian K. R. S. Yan, Zhong Balandin, Alexander A. Zinovev, Alexander Rosenmann, Daniel Sumant, Anirudha V. Nat Commun Article The degradation of intrinsic properties of graphene during the transfer process constitutes a major challenge in graphene device fabrication, stimulating the need for direct growth of graphene on dielectric substrates. Previous attempts of metal-induced transformation of diamond and silicon carbide into graphene suffers from metal contamination and inability to scale graphene growth over large area. Here, we introduce a direct approach to transform polycrystalline diamond into high-quality graphene layers on wafer scale (4 inch in diameter) using a rapid thermal annealing process facilitated by a nickel, Ni thin film catalyst on top. We show that the process can be tuned to grow single or multilayer graphene with good electronic properties. Molecular dynamics simulations elucidate the mechanism of graphene growth on polycrystalline diamond. In addition, we demonstrate the lateral growth of free-standing graphene over micron-sized pre-fabricated holes, opening exciting opportunities for future graphene/diamond-based electronics. Nature Publishing Group 2016-07-04 /pmc/articles/PMC4932195/ /pubmed/27373740 http://dx.doi.org/10.1038/ncomms12099 Text en Copyright © 2016, Nature Publishing Group, a division of Macmillan Publishers Limited. All Rights Reserved. http://creativecommons.org/licenses/by-nc-nd/4.0/ This work is licensed under a Creative Commons Attribution-NonCommercial-NoDerivs 4.0 International License. The images or other third party material in this article are included in the article's Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by-nc-nd/4.0/ |
spellingShingle | Article Berman, Diana Deshmukh, Sanket A. Narayanan, Badri Sankaranarayanan, Subramanian K. R. S. Yan, Zhong Balandin, Alexander A. Zinovev, Alexander Rosenmann, Daniel Sumant, Anirudha V. Metal-induced rapid transformation of diamond into single and multilayer graphene on wafer scale |
title | Metal-induced rapid transformation of diamond into single and multilayer graphene on wafer scale |
title_full | Metal-induced rapid transformation of diamond into single and multilayer graphene on wafer scale |
title_fullStr | Metal-induced rapid transformation of diamond into single and multilayer graphene on wafer scale |
title_full_unstemmed | Metal-induced rapid transformation of diamond into single and multilayer graphene on wafer scale |
title_short | Metal-induced rapid transformation of diamond into single and multilayer graphene on wafer scale |
title_sort | metal-induced rapid transformation of diamond into single and multilayer graphene on wafer scale |
topic | Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4932195/ https://www.ncbi.nlm.nih.gov/pubmed/27373740 http://dx.doi.org/10.1038/ncomms12099 |
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