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Mechanisms and theoretical simulations of the catalytic growth of nanocarbons

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Title
Mechanisms and theoretical simulations of the catalytic growth of nanocarbons
Author(s)
Evgeni S. Penev; Feng Ding; Boris I. Yakobson
Subject
catalytic, ; nucleation and growth, ; nanostructure
Publication Date
2017-11
Journal
MRS BULLETIN, v.42, no.11, pp.794 - 801
Publisher
CAMBRIDGE UNIV PRESS
Abstract
Nanocarbons have been catalytically grown since 1993. However, even today, the formation mechanisms of carbon nanotubes (CNTs) and graphene are not sufficiently understood. This sustained challenge has been an engine for the development in theory concepts and computational methods, tackling the problem of well-controlled production of these nanomaterials. This article discusses how experimental discoveries and theoretical approaches evolved hand-in-hand for the successful understanding of challenging issues, highlighting parallels and distinctions between graphene and CNTs. Key aspects include the mechanisms of nucleation and CNT-liftoff, chiral symmetry selection and control, rates of growth and island shapes, mechanisms defining single chirality of the nanotubes, and ways to suppress grain boundaries in the quest for ever larger and faster growing single-crystal graphene, or longest defect-free CNTs. The theme of catalyst chemistry and structure, either as a nanoparticle or a planar substrate, is traced through the stages of nanocarbon formation, with focus on theoretically generalizable findings © 2017 Materials Research Society
URI
https://pr.ibs.re.kr/handle/8788114/4776
DOI
10.1557/mrs.2017.236
ISSN
0883-7694
Appears in Collections:
Center for Multidimensional Carbon Materials(다차원 탄소재료 연구단) > 1. Journal Papers (저널논문)
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