Raman spectroscopy and imaging of Bernal-stacked bilayer graphene synthesized on copper foil by chemical vapour deposition : growth dependence on temperature

dc.contributor.authorFabiane, Mopeli
dc.contributor.authorMadito, M.J. (Moshawe)
dc.contributor.authorBello, Abdulhakeem
dc.contributor.authorManyala, Ncholu I.
dc.contributor.emailncholu.manyala@up.ac.zaen_ZA
dc.date.accessioned2017-06-26T09:34:18Z
dc.date.issued2017-05
dc.description.abstractWe report on the effect of temperature on the growth of bilayer graphene on a copper foil under atmospheric pressure chemical vapour deposition (AP-CVD). Before characterization of the AP-CVD bilayer graphene, a high-quality graphene flake was obtained from the Kish bulk graphite by micro-mechanical exfoliation and characterized by using Raman spectroscopy and imaging. The Raman data of the exfoliated, high-quality graphene flake show monolayer and bilayer graphenes and were compared with the Raman data of AP-CVD graphene. Raman spectroscopy of AP-CVD graphene shows bilayer films that exhibit predominantly Bernal stacking with an I-2D/I-G ratio of similar to 1. At low growth temperature (similar to 780 degrees C), Raman disorder-related peak intensity in the AP-CVD graphene is high and decreases with an increase in growth temperature to the lowest disorder intensity at similar to 973 degrees C. The selected area electron diffraction and atomic force microscopy average step height analysis showed the thickness of the bilayer graphene. The AP-CVD graphene is uniform at low growth temperatures (similar to 780 degrees C) with a high disorder and becomes non-uniform at high growth temperatures (similar to 867-973 degrees C) with a very low disorder as bilayer graphene evolves to form islands with an average lateral size of <10m. Competition between carbon adatoms supply through dehydrogenation of the CHx species, mobility and desorption rate of the carbon-adatom species for nucleation of the bilayer graphene as a function of temperature is elucidated. This study provides further insight into the growth mechanisms of bilayer graphene by AP-CVD on Cu.en_ZA
dc.description.departmentPhysicsen_ZA
dc.description.embargo2018-05-30
dc.description.librarianhj2017en_ZA
dc.description.sponsorshipThe South African Research Chairs Initiative of the South Africa Department of Science and Technology and the National Research Foundation (NRF) (grant no. 97994). MF thanks the University of Pretoria and the NRF for financial support during his PhD studies.en_ZA
dc.description.urihttp://onlinelibrary.wiley.com/journal/10.1002/(ISSN)1097-4555en_ZA
dc.identifier.citationFabiane, M., Madito, M.J., Bello, A. & Manyala, N.I. 2017, 'Raman spectroscopy and imaging of Bernal-stacked bilayer graphene synthesized on copper foil by chemical vapour deposition : growth dependence on temperature', Journal of Raman Spectroscopy, vol. 48, n o. 5, pp. 639-646.en_ZA
dc.identifier.issn1097-4555 (online)
dc.identifier.issn0377-0486 (print)
dc.identifier.other10.1002/jrs.5094
dc.identifier.urihttp://hdl.handle.net/2263/61086
dc.language.isoenen_ZA
dc.publisherWileyen_ZA
dc.rights© 2017 John Wiley & Sons, Ltd. This is the pre-peer reviewed version of the following article : 'Raman spectroscopy and imaging of Bernal-stacked bilayer graphene synthesized on copper foil by chemical vapour deposition: growth dependence on temperature', Journal of Raman Spectroscopy, vol. 48, n o. 5, pp. 639-646, 2017, doi : 10.1002/jrs.5094. The definite version is available at : http://onlinelibrary.wiley.comjournal/10.1002/(ISSN)1097-4555.en_ZA
dc.subjectGrapheneen_ZA
dc.subjectCopper foilen_ZA
dc.subjectBernal-stacked bilayeren_ZA
dc.subjectExfoliated grapheneen_ZA
dc.subjectAtmospheric pressure chemical vapour deposition (AP-CVD)en_ZA
dc.subjectRaman spectroscopy and imagingen_ZA
dc.titleRaman spectroscopy and imaging of Bernal-stacked bilayer graphene synthesized on copper foil by chemical vapour deposition : growth dependence on temperatureen_ZA
dc.typePostprint Articleen_ZA

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