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Molecular dynamics of the halloysite nanotubes

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dc.date.accessioned 2019-01-22T20:46:07Z
dc.date.available 2019-01-22T20:46:07Z
dc.date.issued 2018
dc.identifier.issn 1463-9076
dc.identifier.uri https://dspace.kpfu.ru/xmlui/handle/net/148668
dc.description.abstract © 2018 the Owner Societies. We report large-scale and long-time molecular dynamics simulations demonstrating the transformation of a single kaolin alumosilicate sheet to a halloysite nanotube. The models we consider contain up to 5 × 105 atoms, which is two orders of magnitude larger than that used in previous theoretical works. It was found that the temperature plays a crucial role in the formation of the rolled geometry of the halloysite. For the models with periodic boundary conditions, we observe the tendency to form twin-tube structures, which is confirmed experimentally by atomic force microscopy imaging. The molecular dynamics calculations show that the rate of the rolling process is very sensitive to the choice of the winding axis and varies from 5 ns to 25 ns. The effects of the open boundary conditions and the initial form of the kaolin alumosilicate sheet are discussed. Our simulation results are consistent with experimental TEM and AFM halloysite tube imaging.
dc.relation.ispartofseries Physical Chemistry Chemical Physics
dc.title Molecular dynamics of the halloysite nanotubes
dc.type Article
dc.relation.ispartofseries-issue 8
dc.relation.ispartofseries-volume 20
dc.collection Публикации сотрудников КФУ
dc.relation.startpage 5841
dc.source.id SCOPUS14639076-2018-20-8-SID85042593427


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  • Публикации сотрудников КФУ Scopus [24551]
    Коллекция содержит публикации сотрудников Казанского федерального (до 2010 года Казанского государственного) университета, проиндексированные в БД Scopus, начиная с 1970г.

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