Structure and superconducting characteristics of magnesium diboride, substitution of boron atoms by oxygen and carbon

dc.bibliographicCitation.firstPage012023
dc.bibliographicCitation.journalTitleIOP Conference Series: Materials Science and Engineeringeng
dc.bibliographicCitation.volume279
dc.contributor.authorPrikhna, Tetiana
dc.contributor.authorRomaka, Vitaliy
dc.contributor.authorEisterer, Michael
dc.contributor.authorShapovalov, Andrii
dc.contributor.authorKozyrev, Artem
dc.contributor.authorGrechnev, Gennadiy
dc.contributor.authorBoutko, Viktor
dc.contributor.authorGoldacker, Wilfried
dc.contributor.authorHabisreuther, Tobias
dc.contributor.authorVakaliuk, Oleksii
dc.contributor.authorHalbedel, Bernd
dc.date.accessioned2023-03-06T07:55:37Z
dc.date.available2023-03-06T07:55:37Z
dc.date.issued2017
dc.description.abstractAn x-ray analysis of MgB2-based materials shows that they contain MgB2 and MgO phases. According to a quantitative Auger analysis (taken after removing the oxidized surface layer by Ar ion etching in the microscope chamber) the MgB2 phase contains some amount of oxygen that approximately corresponds to the composition MgB2.2-1.7O0.4-0.6. Rietveld refinement of the MgB2 phase, based on EDX data with varying B/O content, leads to the composition MgB1.68-1.8O0.2-0.32. Ab-initio modelling of boron substitution by oxygen in MgB2 (ΔH f = -150.6 meV/atom) shows that this is energetically favourable up to the composition MgB1.75O0.25 (ΔH f = -191.4 meV/atom). In contrast to carbon substitution, where very small levels of doping can dramatically affect the superconducting characteristics of the material with concomitant changes in the electron density, oxygen substitution results in very little change in the superconducting properties of MgB2. The formation of vacancies at the Mg site of both MgB2 and substituted MgB1.75O0.25 was modelled as well, but has shown that such processes are energetically disadvantageous (ΔHf of Mg0.875B2 and Mg0.75B1.75O0.25 are equal to -45.5 and -93.5 meV/atom, respectively).eng
dc.description.versionpublishedVersioneng
dc.identifier.urihttps://oa.tib.eu/renate/handle/123456789/11672
dc.identifier.urihttp://dx.doi.org/10.34657/10705
dc.language.isoeng
dc.publisherLondon [u.a.] : Institute of Physics
dc.relation.doihttps://doi.org/10.1088/1757-899x/279/1/012023
dc.relation.essn1757-899X
dc.relation.issn1757-8981
dc.rights.licenseCC BY 3.0 Unported
dc.rights.urihttps://creativecommons.org/licenses/by/3.0
dc.subject.ddc530
dc.subject.gndKonferenzschriftger
dc.subject.otherAb initio modellingeng
dc.subject.otherBoron atomeng
dc.subject.otherCarbon substitutioneng
dc.subject.otherIon etchingeng
dc.subject.otherMagnesium diborideseng
dc.subject.otherOxidized surfaceseng
dc.subject.otherQuantitative Auger analysiseng
dc.subject.otherSuperconducting propertieseng
dc.titleStructure and superconducting characteristics of magnesium diboride, substitution of boron atoms by oxygen and carboneng
dc.typeBookParteng
dc.typeTexteng
dcterms.event2017 International Cryogenic Materials Conference, ICMC 2017, 9–13 July 2017, Madison, Wisconsin, USA
tib.accessRightsopenAccess
wgl.contributorIPHT
wgl.subjectPhysikger
wgl.typeBuchkapitel / Sammelwerksbeitragger
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