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dc.contributor.authorBoyarchenkov, A. S.en
dc.contributor.authorPotashnikov, S. I.en
dc.contributor.authorNekrasov, K. A.en
dc.contributor.authorKupryazhkin, A. Ya.en
dc.date.accessioned2014-11-29T19:46:10Z-
dc.date.available2014-11-29T19:46:10Z-
dc.date.issued2013-
dc.identifier.citationInvestigation of cation self-diffusion mechanisms in UO 2±x using molecular dynamics / A. S. Boyarchenkov, S. I. Potashnikov, K. A. Nekrasov [et al.] // Journal of Nuclear Materials. — 2013. — Vol. 442. — № 1-3. — P. 148-161.en
dc.identifier.issn0022-3115-
dc.identifier.other1good_DOI
dc.identifier.other313e5ca6-a592-44dd-a9c7-01186c5f39c8pure_uuid
dc.identifier.otherhttp://www.scopus.com/inward/record.url?partnerID=8YFLogxK&scp=84884586184m
dc.identifier.urihttp://elar.urfu.ru/handle/10995/27190-
dc.description.abstractThis article is devoted to investigation of cation self-diffusion mechanisms, taking place in UO2, UO2+x, and UO2-x crystals simulated under periodic (PBC) and isolated (IBC) boundary conditions using the method of molecular dynamics in the approximation of rigid ions and pair interactions. It is shown that under PBC the cations diffuse via an exchange mechanism (with the formation of Frenkel defects) with activation energy of 15-22 eV, while under IBC there is competition between the exchange and vacancy (via Schottky defects) diffusion mechanisms, which give the effective activation energy of 11-13 eV near the melting temperature of the simulated UO2.00 nanocrystals. Vacancy diffusion with lower activation energy of 6-7 eV was dominant in the non-stoichiometric crystals UO2.10, UO2.15 and UO 1.85. Observations showed that a cation vacancy is accompanied by different number of anion vacancies depending on the deviation from stoichiometry: no vacancies in UO2.15, single vacancy in UO 2.00 and four vacancies in UO1.85. The corresponding law of mass action formulas derived within the Lidiard-Matzke model allowed explaining the obtained activation energies and predicting a change in the activation energy within the temperature range of the superionic phase transition. The diffusion of cations on the surface of nanocrystals had activation energy of 3.1-3.6 eV. © 2013 Elsevier Ltd. All rights reserved.en
dc.format.mimetypeapplication/pdfen
dc.language.isoenen
dc.sourceJournal of Nuclear Materialsen
dc.subjectDIFFUSION MECHANISMSen
dc.subjectEFFECTIVE ACTIVATION ENERGYen
dc.subjectEXCHANGE MECHANISMen
dc.subjectLAW OF MASS ACTIONen
dc.subjectNON-STOICHIOMETRICen
dc.subjectSUPERIONIC PHASE TRANSITIONen
dc.subjectTEMPERATURE RANGEen
dc.subjectVACANCY DIFFUSIONen
dc.subjectDIFFUSIONen
dc.subjectMOLECULAR DYNAMICSen
dc.subjectNANOCRYSTALSen
dc.subjectPOSITIVE IONSen
dc.subjectVACANCIESen
dc.subjectACTIVATION ENERGYen
dc.titleInvestigation of cation self-diffusion mechanisms in UO 2±x using molecular dynamicsen
dc.typeArticleen
dc.typeinfo:eu-repo/semantics/publishedVersionen
dc.typeinfo:eu-repo/semantics/articleen
dc.identifier.doi10.1016/j.jnucmat.2013.08.030-
dc.identifier.scopus84884586184-
local.affiliationUral Federal University, Mira Street 19, 620002 Yekaterinburg, Russian Federationen
local.contributor.employeeБоярченков Антон Сергеевичru
local.contributor.employeeПоташников Святослав Игоревичru
local.contributor.employeeНекрасов Кирилл Александровичru
local.contributor.employeeКупряжкин Анатолий Яковлевичru
local.description.firstpage148-
local.description.lastpage161-
local.issue1-3-
local.volume442-
dc.identifier.wos000328175400019-
local.contributor.departmentФизико-технологический институтru
local.identifier.pure861700-
local.identifier.eid2-s2.0-84884586184-
local.identifier.wosWOS:000328175400019-
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