Solid state wetting and dynamics of solid surface nanorelief

Using molecular dynamics solid state wetting in the Cu (nanoparticle) / Cu (substrate) system was studied. It has been found that the solid state spreading mechanism corresponds, first of all, to the surface diffusion that was confirmed by the linear dependence of square radii of the first monolayer...

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Main Authors: A.G. Bembel, I.V. Talyzin, V.M. Samsonov
Format: Article
Language:Russian
Published: Tver State University 2018-12-01
Series:Физико-химические аспекты изучения кластеров, наноструктур и наноматериалов
Subjects:
Online Access:https://physchemaspects.ru/archives/2018/fh2018-doi-10-26456-pcascnn-2018-10-083.pdf
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author A.G. Bembel
I.V. Talyzin
V.M. Samsonov
author_facet A.G. Bembel
I.V. Talyzin
V.M. Samsonov
author_sort A.G. Bembel
collection DOAJ
description Using molecular dynamics solid state wetting in the Cu (nanoparticle) / Cu (substrate) system was studied. It has been found that the solid state spreading mechanism corresponds, first of all, to the surface diffusion that was confirmed by the linear dependence of square radii of the first monolayer on the spreading time. A hypophysis was put forward and justified that the degradation of nanorelief of the solid surface occurs by means of the solid state wetting mechanism.
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spelling doaj.art-dd38534b33ec4773a71f3b5a5b815cff2022-12-21T19:09:32ZrusTver State UniversityФизико-химические аспекты изучения кластеров, наноструктур и наноматериалов2226-44422226-44422018-12-0110839210.26456/pcascnn/2018.10.083Solid state wetting and dynamics of solid surface nanoreliefA.G. Bembel0I.V. Talyzin1V.M. Samsonov2Tver State UniversityTver State UniversityTver State UniversityUsing molecular dynamics solid state wetting in the Cu (nanoparticle) / Cu (substrate) system was studied. It has been found that the solid state spreading mechanism corresponds, first of all, to the surface diffusion that was confirmed by the linear dependence of square radii of the first monolayer on the spreading time. A hypophysis was put forward and justified that the degradation of nanorelief of the solid surface occurs by means of the solid state wetting mechanism.https://physchemaspects.ru/archives/2018/fh2018-doi-10-26456-pcascnn-2018-10-083.pdfsolid state wettingsurface diffusionnanoparticlesurfacenanoreliefmolecular dynamics
spellingShingle A.G. Bembel
I.V. Talyzin
V.M. Samsonov
Solid state wetting and dynamics of solid surface nanorelief
Физико-химические аспекты изучения кластеров, наноструктур и наноматериалов
solid state wetting
surface diffusion
nanoparticle
surface
nanorelief
molecular dynamics
title Solid state wetting and dynamics of solid surface nanorelief
title_full Solid state wetting and dynamics of solid surface nanorelief
title_fullStr Solid state wetting and dynamics of solid surface nanorelief
title_full_unstemmed Solid state wetting and dynamics of solid surface nanorelief
title_short Solid state wetting and dynamics of solid surface nanorelief
title_sort solid state wetting and dynamics of solid surface nanorelief
topic solid state wetting
surface diffusion
nanoparticle
surface
nanorelief
molecular dynamics
url https://physchemaspects.ru/archives/2018/fh2018-doi-10-26456-pcascnn-2018-10-083.pdf
work_keys_str_mv AT agbembel solidstatewettinganddynamicsofsolidsurfacenanorelief
AT ivtalyzin solidstatewettinganddynamicsofsolidsurfacenanorelief
AT vmsamsonov solidstatewettinganddynamicsofsolidsurfacenanorelief