ABOUT ASSESSMENT OF DIHEDRAL ANGLE BETWEEN METAL NANOPARTICLES IN THE COALESCENCE PROCESS

The Monte-Carlo simulation of the coalescence of gold, copper and silver nanoparticles of different shapes was carried out. The interaction between nanoparticles was described by the many- body Gupta potential. An algorithm for detection and assessment of the dihedral angle was developed. An assessm...

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Main Authors: A.Yu. Kolosov, D.N. Sokolov, N.Yu. Sdobnyakov, P.V. Komarov, V.S. Myasnichenko, S.S. Bogdanov, A.A. Bogatov
Format: Article
Language:Russian
Published: Tver State University 2016-12-01
Series:Физико-химические аспекты изучения кластеров, наноструктур и наноматериалов
Subjects:
Online Access:https://physchemaspects.ru/archives/2016/%D0%A4%D0%A5-2016.%20%D0%9A%D0%BE%D0%BB%D0%BE%D1%81%D0%BE%D0%B2%20%D0%90%D0%AE.pdf
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author A.Yu. Kolosov
D.N. Sokolov
N.Yu. Sdobnyakov
P.V. Komarov
V.S. Myasnichenko
S.S. Bogdanov
A.A. Bogatov
author_facet A.Yu. Kolosov
D.N. Sokolov
N.Yu. Sdobnyakov
P.V. Komarov
V.S. Myasnichenko
S.S. Bogdanov
A.A. Bogatov
author_sort A.Yu. Kolosov
collection DOAJ
description The Monte-Carlo simulation of the coalescence of gold, copper and silver nanoparticles of different shapes was carried out. The interaction between nanoparticles was described by the many- body Gupta potential. An algorithm for detection and assessment of the dihedral angle was developed. An assessment of the dihedral angle between metal nanoparticles in the coalescence process was carried out.
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spelling doaj.art-5d47f1be684b4acead2858ca0e16c8c02022-12-22T00:34:26ZrusTver State UniversityФизико-химические аспекты изучения кластеров, наноструктур и наноматериалов2226-44422658-43602016-12-018172179ABOUT ASSESSMENT OF DIHEDRAL ANGLE BETWEEN METAL NANOPARTICLES IN THE COALESCENCE PROCESSA.Yu. Kolosov0D.N. Sokolov1N.Yu. Sdobnyakov2P.V. Komarov3V.S. Myasnichenko4S.S. Bogdanov5A.A. Bogatov6Tver State UniversityTver State UniversityTver State UniversityTver State UniversityTver State UniversityTver State UniversityTver State UniversityThe Monte-Carlo simulation of the coalescence of gold, copper and silver nanoparticles of different shapes was carried out. The interaction between nanoparticles was described by the many- body Gupta potential. An algorithm for detection and assessment of the dihedral angle was developed. An assessment of the dihedral angle between metal nanoparticles in the coalescence process was carried out.https://physchemaspects.ru/archives/2016/%D0%A4%D0%A5-2016.%20%D0%9A%D0%BE%D0%BB%D0%BE%D1%81%D0%BE%D0%B2%20%D0%90%D0%AE.pdfcoalescencegold nanoparticlescopper nanoparticlessilver nanoparticlesMonte-Carlo methodGupta interatomic potentialphase transitionneck formation
spellingShingle A.Yu. Kolosov
D.N. Sokolov
N.Yu. Sdobnyakov
P.V. Komarov
V.S. Myasnichenko
S.S. Bogdanov
A.A. Bogatov
ABOUT ASSESSMENT OF DIHEDRAL ANGLE BETWEEN METAL NANOPARTICLES IN THE COALESCENCE PROCESS
Физико-химические аспекты изучения кластеров, наноструктур и наноматериалов
coalescence
gold nanoparticles
copper nanoparticles
silver nanoparticles
Monte-Carlo method
Gupta interatomic potential
phase transition
neck formation
title ABOUT ASSESSMENT OF DIHEDRAL ANGLE BETWEEN METAL NANOPARTICLES IN THE COALESCENCE PROCESS
title_full ABOUT ASSESSMENT OF DIHEDRAL ANGLE BETWEEN METAL NANOPARTICLES IN THE COALESCENCE PROCESS
title_fullStr ABOUT ASSESSMENT OF DIHEDRAL ANGLE BETWEEN METAL NANOPARTICLES IN THE COALESCENCE PROCESS
title_full_unstemmed ABOUT ASSESSMENT OF DIHEDRAL ANGLE BETWEEN METAL NANOPARTICLES IN THE COALESCENCE PROCESS
title_short ABOUT ASSESSMENT OF DIHEDRAL ANGLE BETWEEN METAL NANOPARTICLES IN THE COALESCENCE PROCESS
title_sort about assessment of dihedral angle between metal nanoparticles in the coalescence process
topic coalescence
gold nanoparticles
copper nanoparticles
silver nanoparticles
Monte-Carlo method
Gupta interatomic potential
phase transition
neck formation
url https://physchemaspects.ru/archives/2016/%D0%A4%D0%A5-2016.%20%D0%9A%D0%BE%D0%BB%D0%BE%D1%81%D0%BE%D0%B2%20%D0%90%D0%AE.pdf
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