Self-Assembly of Low-Dimensional 3D Titanium Systems During Quasi-Equilibrium Steady-State Condensation

Structure formation mechanisms of low-dimensional porous systems are explained on the ground of different growth rates at local condensate areas and partial coalescence of the structural fragments. By means of scanning and transmission electron microscopy the formation mechanisms of porous Ti conden...

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Main Authors: O.А. Mokrenko, Yu.O. Kosminska, V.I. Perekrestov
Format: Article
Language:English
Published: Sumy State University 2011-01-01
Series:Журнал нано- та електронної фізики
Subjects:
Online Access:http://jnep.sumdu.edu.ua/download/numbers/2011/2/articles/jnep_2011_V3_N2_105-115.pdf
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author O.А. Mokrenko
Yu.O. Kosminska
V.I. Perekrestov
author_facet O.А. Mokrenko
Yu.O. Kosminska
V.I. Perekrestov
author_sort O.А. Mokrenko
collection DOAJ
description Structure formation mechanisms of low-dimensional porous systems are explained on the ground of different growth rates at local condensate areas and partial coalescence of the structural fragments. By means of scanning and transmission electron microscopy the formation mechanisms of porous Ti condensates on glass and KCl cleaved facets are studied. It is shown by the example of self-assembly of porous Ti layers that the factors underlying such process are self-organization of time-constant critically low effective supersaturation and continuous sequence of interdependent structure and morphology changes of the growth surface that cause the appearance of active centers for attaching adatoms.
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issn 2077-6772
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publishDate 2011-01-01
publisher Sumy State University
record_format Article
series Журнал нано- та електронної фізики
spelling doaj-art-ce601c1cd0d74c7c8c5de6840c7747252025-08-20T02:19:30ZengSumy State UniversityЖурнал нано- та електронної фізики2077-67722011-01-0132Self-Assembly of Low-Dimensional 3D Titanium Systems During Quasi-Equilibrium Steady-State CondensationO.А. MokrenkoYu.O. KosminskaV.I. PerekrestovStructure formation mechanisms of low-dimensional porous systems are explained on the ground of different growth rates at local condensate areas and partial coalescence of the structural fragments. By means of scanning and transmission electron microscopy the formation mechanisms of porous Ti condensates on glass and KCl cleaved facets are studied. It is shown by the example of self-assembly of porous Ti layers that the factors underlying such process are self-organization of time-constant critically low effective supersaturation and continuous sequence of interdependent structure and morphology changes of the growth surface that cause the appearance of active centers for attaching adatoms.http://jnep.sumdu.edu.ua/download/numbers/2011/2/articles/jnep_2011_V3_N2_105-115.pdfSelf-AssemblyLow-Dimensional StructuresPorositySelf-OrganizationSupersaturation
spellingShingle O.А. Mokrenko
Yu.O. Kosminska
V.I. Perekrestov
Self-Assembly of Low-Dimensional 3D Titanium Systems During Quasi-Equilibrium Steady-State Condensation
Журнал нано- та електронної фізики
Self-Assembly
Low-Dimensional Structures
Porosity
Self-Organization
Supersaturation
title Self-Assembly of Low-Dimensional 3D Titanium Systems During Quasi-Equilibrium Steady-State Condensation
title_full Self-Assembly of Low-Dimensional 3D Titanium Systems During Quasi-Equilibrium Steady-State Condensation
title_fullStr Self-Assembly of Low-Dimensional 3D Titanium Systems During Quasi-Equilibrium Steady-State Condensation
title_full_unstemmed Self-Assembly of Low-Dimensional 3D Titanium Systems During Quasi-Equilibrium Steady-State Condensation
title_short Self-Assembly of Low-Dimensional 3D Titanium Systems During Quasi-Equilibrium Steady-State Condensation
title_sort self assembly of low dimensional 3d titanium systems during quasi equilibrium steady state condensation
topic Self-Assembly
Low-Dimensional Structures
Porosity
Self-Organization
Supersaturation
url http://jnep.sumdu.edu.ua/download/numbers/2011/2/articles/jnep_2011_V3_N2_105-115.pdf
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AT yuokosminska selfassemblyoflowdimensional3dtitaniumsystemsduringquasiequilibriumsteadystatecondensation
AT viperekrestov selfassemblyoflowdimensional3dtitaniumsystemsduringquasiequilibriumsteadystatecondensation