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RAMAN SPECTRA OF GRAPHENE SYNTHESIZED BY CHEMICAL VAPOR DEPOSITION FROM DECANE

Abstract

Raman spectroscopy was used to study the structural properties of graphene synthesized by the chemical vapor deposition method using decane (C10H22) as a precursor at various hydrogen concentrations. Reduction of the carrier gas flow from 150 cm3/min to zero leads to a change in the average spacing between defects from 53 to 212 nm, average grain size from 87 to 798 nm, and to violation of the graphene layer continuity. The obtained dependences can be used to control the defectiveness, homogeneity and continuity of the graphene layer coating during the synthesis by this method.

About the Authors

M. S. Tivanov
Belarusian State University
Russian Federation


E. A. Kolesov
Belarusian State University
Russian Federation


O. V. Korolik
Belarusian State University
Russian Federation


A. M. Saad
Al-Balqa Applied University
Russian Federation


N. G. Kovalchuk
Belarusian State University of Informatics and Radioelectronics
Russian Federation


I. V. Komissarov
Belarusian State University of Informatics and Radioelectronics
Russian Federation


V. A. Labunov
Belarusian State University of Informatics and Radioelectronics
Russian Federation


M. . Opielak
The State School of Higher Educationin in Chelm
Russian Federation


P. . Zukowski
Lublin University of Technology
Russian Federation


T. N. Koltunowicz
Lublin University of Technology
Russian Federation


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Review

For citations:


Tivanov M.S., Kolesov E.A., Korolik O.V., Saad A.M., Kovalchuk N.G., Komissarov I.V., Labunov V.A., Opielak M., Zukowski P., Koltunowicz T.N. RAMAN SPECTRA OF GRAPHENE SYNTHESIZED BY CHEMICAL VAPOR DEPOSITION FROM DECANE. Zhurnal Prikladnoii Spektroskopii. 2017;84(6):898-904. (In Russ.)

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