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Real-Time Multiscale Monitoring and Tailoring of Graphene Growth on Liquid Copper

[Image: see text] The synthesis of large, defect-free two-dimensional materials (2DMs) such as graphene is a major challenge toward industrial applications. Chemical vapor deposition (CVD) on liquid metal catalysts (LMCats) is a recently developed process for the fast synthesis of high-quality singl...

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Autores principales: Jankowski, Maciej, Saedi, Mehdi, La Porta, Francesco, Manikas, Anastasios C., Tsakonas, Christos, Cingolani, Juan S., Andersen, Mie, de Voogd, Marc, van Baarle, Gertjan J. C., Reuter, Karsten, Galiotis, Costas, Renaud, Gilles, Konovalov, Oleg V., Groot, Irene M. N.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2021
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8291761/
https://www.ncbi.nlm.nih.gov/pubmed/34060320
http://dx.doi.org/10.1021/acsnano.0c10377
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author Jankowski, Maciej
Saedi, Mehdi
La Porta, Francesco
Manikas, Anastasios C.
Tsakonas, Christos
Cingolani, Juan S.
Andersen, Mie
de Voogd, Marc
van Baarle, Gertjan J. C.
Reuter, Karsten
Galiotis, Costas
Renaud, Gilles
Konovalov, Oleg V.
Groot, Irene M. N.
author_facet Jankowski, Maciej
Saedi, Mehdi
La Porta, Francesco
Manikas, Anastasios C.
Tsakonas, Christos
Cingolani, Juan S.
Andersen, Mie
de Voogd, Marc
van Baarle, Gertjan J. C.
Reuter, Karsten
Galiotis, Costas
Renaud, Gilles
Konovalov, Oleg V.
Groot, Irene M. N.
author_sort Jankowski, Maciej
collection PubMed
description [Image: see text] The synthesis of large, defect-free two-dimensional materials (2DMs) such as graphene is a major challenge toward industrial applications. Chemical vapor deposition (CVD) on liquid metal catalysts (LMCats) is a recently developed process for the fast synthesis of high-quality single crystals of 2DMs. However, up to now, the lack of in situ techniques enabling direct feedback on the growth has limited our understanding of the process dynamics and primarily led to empirical growth recipes. Thus, an in situ multiscale monitoring of the 2DMs structure, coupled with a real-time control of the growth parameters, is necessary for efficient synthesis. Here we report real-time monitoring of graphene growth on liquid copper (at 1370 K under atmospheric pressure CVD conditions) via four complementary in situ methods: synchrotron X-ray diffraction and reflectivity, Raman spectroscopy, and radiation-mode optical microscopy. This has allowed us to control graphene growth parameters such as shape, dispersion, and the hexagonal supra-organization with very high accuracy. Furthermore, the switch from continuous polycrystalline film to the growth of millimeter-sized defect-free single crystals could also be accomplished. The presented results have far-reaching consequences for studying and tailoring 2D material formation processes on LMCats under CVD growth conditions. Finally, the experimental observations are supported by multiscale modeling that has thrown light into the underlying mechanisms of graphene growth.
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spelling pubmed-82917612021-07-21 Real-Time Multiscale Monitoring and Tailoring of Graphene Growth on Liquid Copper Jankowski, Maciej Saedi, Mehdi La Porta, Francesco Manikas, Anastasios C. Tsakonas, Christos Cingolani, Juan S. Andersen, Mie de Voogd, Marc van Baarle, Gertjan J. C. Reuter, Karsten Galiotis, Costas Renaud, Gilles Konovalov, Oleg V. Groot, Irene M. N. ACS Nano [Image: see text] The synthesis of large, defect-free two-dimensional materials (2DMs) such as graphene is a major challenge toward industrial applications. Chemical vapor deposition (CVD) on liquid metal catalysts (LMCats) is a recently developed process for the fast synthesis of high-quality single crystals of 2DMs. However, up to now, the lack of in situ techniques enabling direct feedback on the growth has limited our understanding of the process dynamics and primarily led to empirical growth recipes. Thus, an in situ multiscale monitoring of the 2DMs structure, coupled with a real-time control of the growth parameters, is necessary for efficient synthesis. Here we report real-time monitoring of graphene growth on liquid copper (at 1370 K under atmospheric pressure CVD conditions) via four complementary in situ methods: synchrotron X-ray diffraction and reflectivity, Raman spectroscopy, and radiation-mode optical microscopy. This has allowed us to control graphene growth parameters such as shape, dispersion, and the hexagonal supra-organization with very high accuracy. Furthermore, the switch from continuous polycrystalline film to the growth of millimeter-sized defect-free single crystals could also be accomplished. The presented results have far-reaching consequences for studying and tailoring 2D material formation processes on LMCats under CVD growth conditions. Finally, the experimental observations are supported by multiscale modeling that has thrown light into the underlying mechanisms of graphene growth. American Chemical Society 2021-06-01 2021-06-22 /pmc/articles/PMC8291761/ /pubmed/34060320 http://dx.doi.org/10.1021/acsnano.0c10377 Text en © 2021 The Authors. Published by American Chemical Society Permits the broadest form of re-use including for commercial purposes, provided that author attribution and integrity are maintained (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Jankowski, Maciej
Saedi, Mehdi
La Porta, Francesco
Manikas, Anastasios C.
Tsakonas, Christos
Cingolani, Juan S.
Andersen, Mie
de Voogd, Marc
van Baarle, Gertjan J. C.
Reuter, Karsten
Galiotis, Costas
Renaud, Gilles
Konovalov, Oleg V.
Groot, Irene M. N.
Real-Time Multiscale Monitoring and Tailoring of Graphene Growth on Liquid Copper
title Real-Time Multiscale Monitoring and Tailoring of Graphene Growth on Liquid Copper
title_full Real-Time Multiscale Monitoring and Tailoring of Graphene Growth on Liquid Copper
title_fullStr Real-Time Multiscale Monitoring and Tailoring of Graphene Growth on Liquid Copper
title_full_unstemmed Real-Time Multiscale Monitoring and Tailoring of Graphene Growth on Liquid Copper
title_short Real-Time Multiscale Monitoring and Tailoring of Graphene Growth on Liquid Copper
title_sort real-time multiscale monitoring and tailoring of graphene growth on liquid copper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8291761/
https://www.ncbi.nlm.nih.gov/pubmed/34060320
http://dx.doi.org/10.1021/acsnano.0c10377
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