A fast synthesis route of boron-carbon-nitrogen ultrathin layers towards highly mixed ternary B-C-N phases
Author
Leardini, Fabrice


Entity
UAM. Departamento de Física de la Materia Condensada; UAM. Departamento de Física de MaterialesPublisher
IOP PublishingDate
2019-05-02Citation
10.1088/2053-1583/ab175c
2D Materials 6.3 (2019): 035015
ISSN
2053-1583 (online)DOI
10.1088/2053-1583/ab175cProject
Gobierno de España. FIS2014-61634-EXP; Gobierno de España. MAT2015-65203-R; Gobierno de España. SEV-2016-0686Editor's Version
https://doi.org/10.1088/2053-1583/ab175cSubjects
Raman spectroscopy; Borocarbonitride; Optical Bandgap; Electronic Transport Measurements; Plasma-Enhanced Chemical Vapor Deposition; Transmission Electron Microscopy; X-Ray Photoelectron Spectroscopy; FísicaRights
© 2019 IOP Publishing Ltd.Abstract
We report a direct and fast synthesis route to grow boron-carbon-nitrogen layers based on microwave-assisted plasma enhanced chemical vapour deposition (PECVD) by using methylamine borane as a single source molecular precursor. This easy and inexpensive method allows controlled and reproducible growth of B-C-N layers onto thin Cu foils. Their morphological, structural, chemical, optical and transport properties have been thoroughly characterized by a number of different microscopies, transport and spectroscopic techniques. Though disorder and segregation into C-rich and h-BN-rich domains have been observed in ultrathin flat few layers, high doping levels have been reached, inducing strong modifications of the electronic, optical and transport properties of C-rich and h-BN-rich phases. This synthesis procedure can open new routes towards the achievement of homogeneous highly mixed ternary B-C-N phases
Files in this item
Google Scholar:Leardini, Fabrice
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Jiménez-Arévalo, Nuria
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Jiménez Ferrer, M. Isabel
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Ares Fernández, José Ramón
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Molina, Pablo
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Navarro, Cristina Gómez
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Manzanares, Yolanda
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Granados, Daniel
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Urbanos, Fernando J.
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Garcia-Garcia, F. Javier
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Del Campo, Adolfo
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Avvisati, Giulia
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Betti, Maria Grazia
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Mariani, Carlo
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