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Features wetting and anisotropy of interfacial energy in a metal particle-silicon system

In this paper, we propose a technique for estimating the wetting and anisotropy of the interfacial energy at the interface stabilized by organic compounds of metal particles (cobalt, copper) and semiconductor substrate based on the construction of the Winterbottom equilibrium shape of the crystal. T...

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Asıl Yazarlar: Blinov, A. V., Блинов, А. В., Kravtsov, A. A., Кравцов, А. А., Serov, A. V., Серов, А. В.
Materyal Türü: Статья
Dil:English
Baskı/Yayın Bilgisi: EDP Sciences 2018
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Online Erişim:https://www.scopus.com/record/display.uri?eid=2-s2.0-85056505643&origin=resultslist&sort=plf-f&src=s&nlo=&nlr=&nls=&sid=835bb0225a84b644872b8e66deb35b0e&sot=aff&sdt=sisr&sl=174&s=AF-ID%28%22North+Caucasus+Federal+University%22+60070541%29+OR+AF-ID%28%22Stavropol+State+University%22+60070961%29+OR+AF-ID%28%22stavropolskij+Gosudarstvennyj+Tehniceskij+Universitet%22+60026323%29&ref=%28Features+wetting+and+anisotropy+of+interfacial+energy+in+a+metal+particle-silicon+system%29&relpos=0&citeCnt=0&searchTerm=
https://dspace.ncfu.ru/handle/20.500.12258/3482
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spelling ir-20.500.12258-34822020-07-08T14:22:43Z Features wetting and anisotropy of interfacial energy in a metal particle-silicon system Blinov, A. V. Блинов, А. В. Kravtsov, A. A. Кравцов, А. А. Serov, A. V. Серов, А. В. Adhesion Anisotropy Contact angle Interfacial energy Particles (particulate matter) Silicon Wetting Substrates In this paper, we propose a technique for estimating the wetting and anisotropy of the interfacial energy at the interface stabilized by organic compounds of metal particles (cobalt, copper) and semiconductor substrate based on the construction of the Winterbottom equilibrium shape of the crystal. The effective contact angle and the ratio of interphase energies at the particle-substrate interface are calculated from the experimental data of the geometric characteristics of the particles obtained by analyzing the AFM images of the samples. The accuracy of the evaluation of the effective contact angle for all systems is not less than 0.5 °. It was found that the phenomenon of incomplete wetting is observed in the systems under study. The work of adhesion in the systems under consideration is evaluated. With an increase in the effective contact angle, the ratio of the area of contact to V2/3 (V-volume of the particle) in different directions and the work of adhesion is nonlinear. The obtained dependences are qualitatively consistent with thermodynamic states and known data for other systems 2018-11-26T12:59:38Z 2018-11-26T12:59:38Z 2018 Статья Aref'Eva, L.P., Blinov, A.V., Kravtsov, A.A., Shebzukhova, I.G., Serov, A.V. Features wetting and anisotropy of interfacial energy in a metal particle-silicon system // MATEC Web of Conferences. - 2018. - Volume 226. -Номер статьи 03009 https://www.scopus.com/record/display.uri?eid=2-s2.0-85056505643&origin=resultslist&sort=plf-f&src=s&nlo=&nlr=&nls=&sid=835bb0225a84b644872b8e66deb35b0e&sot=aff&sdt=sisr&sl=174&s=AF-ID%28%22North+Caucasus+Federal+University%22+60070541%29+OR+AF-ID%28%22Stavropol+State+University%22+60070961%29+OR+AF-ID%28%22stavropolskij+Gosudarstvennyj+Tehniceskij+Universitet%22+60026323%29&ref=%28Features+wetting+and+anisotropy+of+interfacial+energy+in+a+metal+particle-silicon+system%29&relpos=0&citeCnt=0&searchTerm= http://hdl.handle.net/20.500.12258/3482 en MATEC Web of Conferences application/pdf EDP Sciences
institution СКФУ
collection Репозиторий
language English
topic Adhesion
Anisotropy
Contact angle
Interfacial energy
Particles (particulate matter)
Silicon
Wetting
Substrates
spellingShingle Adhesion
Anisotropy
Contact angle
Interfacial energy
Particles (particulate matter)
Silicon
Wetting
Substrates
Blinov, A. V.
Блинов, А. В.
Kravtsov, A. A.
Кравцов, А. А.
Serov, A. V.
Серов, А. В.
Features wetting and anisotropy of interfacial energy in a metal particle-silicon system
description In this paper, we propose a technique for estimating the wetting and anisotropy of the interfacial energy at the interface stabilized by organic compounds of metal particles (cobalt, copper) and semiconductor substrate based on the construction of the Winterbottom equilibrium shape of the crystal. The effective contact angle and the ratio of interphase energies at the particle-substrate interface are calculated from the experimental data of the geometric characteristics of the particles obtained by analyzing the AFM images of the samples. The accuracy of the evaluation of the effective contact angle for all systems is not less than 0.5 °. It was found that the phenomenon of incomplete wetting is observed in the systems under study. The work of adhesion in the systems under consideration is evaluated. With an increase in the effective contact angle, the ratio of the area of contact to V2/3 (V-volume of the particle) in different directions and the work of adhesion is nonlinear. The obtained dependences are qualitatively consistent with thermodynamic states and known data for other systems
format Статья
author Blinov, A. V.
Блинов, А. В.
Kravtsov, A. A.
Кравцов, А. А.
Serov, A. V.
Серов, А. В.
author_facet Blinov, A. V.
Блинов, А. В.
Kravtsov, A. A.
Кравцов, А. А.
Serov, A. V.
Серов, А. В.
author_sort Blinov, A. V.
title Features wetting and anisotropy of interfacial energy in a metal particle-silicon system
title_short Features wetting and anisotropy of interfacial energy in a metal particle-silicon system
title_full Features wetting and anisotropy of interfacial energy in a metal particle-silicon system
title_fullStr Features wetting and anisotropy of interfacial energy in a metal particle-silicon system
title_full_unstemmed Features wetting and anisotropy of interfacial energy in a metal particle-silicon system
title_sort features wetting and anisotropy of interfacial energy in a metal particle-silicon system
publisher EDP Sciences
publishDate 2018
url https://www.scopus.com/record/display.uri?eid=2-s2.0-85056505643&origin=resultslist&sort=plf-f&src=s&nlo=&nlr=&nls=&sid=835bb0225a84b644872b8e66deb35b0e&sot=aff&sdt=sisr&sl=174&s=AF-ID%28%22North+Caucasus+Federal+University%22+60070541%29+OR+AF-ID%28%22Stavropol+State+University%22+60070961%29+OR+AF-ID%28%22stavropolskij+Gosudarstvennyj+Tehniceskij+Universitet%22+60026323%29&ref=%28Features+wetting+and+anisotropy+of+interfacial+energy+in+a+metal+particle-silicon+system%29&relpos=0&citeCnt=0&searchTerm=
https://dspace.ncfu.ru/handle/20.500.12258/3482
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