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Theoretical Modeling of Epitaxial Graphene Growth on the Ir(111) Surface
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Theoretical Modeling of Epitaxial Graphene Growth on the Ir(111) Surface

Softcover reprint of the original 1st ed. 2017

Book Details

Format Paperback / Softback
Book Series Springer Theses
ISBN-10 331988140X
ISBN-13 9783319881409
Edition Softcover reprint of the original 1st ed. 2017
Publisher Springer International Publishing AG
Imprint Springer International Publishing AG
Country of Manufacture GB
Country of Publication GB
Publication Date Aug 15th, 2018
Print length 182 Pages
Ksh 8,100.00
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The results show that the decomposition mechanism involves production of C monomers by breaking the C-C bond. In turn, the thesis explores the nucleation of carbon clusters on the surface from C monomers prior to graphene formation.
One possible method of producing high-quality graphene is to grow it epitaxially; this thesis investigates the mechanisms involved in doing so. It describes how the initial stages of growth on the Ir(111) surface are modelled using both rate equations and kinetic Monte Carlo, based upon nudged elastic band (NEB) calculated reaction energy barriers. The results show that the decomposition mechanism involves production of C monomers by breaking the C-C bond. In turn, the thesis explores the nucleation of carbon clusters on the surface from C monomers prior to graphene formation. Small arch-shaped clusters containing four to six C atoms, which may be key in graphene formation, are predicted to be long-lived on the surface. In closing, the healing of single vacancy defects in the graphene/Ir(111) surface is investigated, and attempts to heal said defects using ethylene molecules is simulated with molecular dynamics and NEB calculated energy barriers.

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