Journal article Open Access
Nikolay Kalanda; Marta Yarmolich; Maksim Kutuzau; Alexander Gurskii; Maria do RosárioTeixeira Soares; Mindaugas Andrulevičius; Brigita Abakevičienė; Sigitas Tamulevičius
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<dct:identifier rdf:datatype="http://www.w3.org/2001/XMLSchema#anyURI">https://doi.org/10.5281/zenodo.3700064</dct:identifier> <foaf:page rdf:resource="https://doi.org/10.5281/zenodo.3700064"/> <dct:creator> <rdf:Description> <rdf:type rdf:resource="http://xmlns.com/foaf/0.1/Agent"/> <foaf:name>Nikolay Kalanda</foaf:name> <org:memberOf> <foaf:Organization> <foaf:name>Scientific-Practical Materials Research Centre of NAS of Belarus, P.Brovka Str. 19, Minsk 220072, Belarus</foaf:name> </foaf:Organization> </org:memberOf> </rdf:Description> </dct:creator> <dct:creator> <rdf:Description> <rdf:type rdf:resource="http://xmlns.com/foaf/0.1/Agent"/> <foaf:name>Marta Yarmolich</foaf:name> <org:memberOf> <foaf:Organization> <foaf:name>Scientific-Practical Materials Research Centre of NAS of Belarus, P.Brovka Str. 19, Minsk 220072, Belarus</foaf:name> </foaf:Organization> </org:memberOf> </rdf:Description> </dct:creator> <dct:creator> <rdf:Description> <rdf:type rdf:resource="http://xmlns.com/foaf/0.1/Agent"/> <foaf:name>Maksim Kutuzau</foaf:name> <org:memberOf> <foaf:Organization> <foaf:name>Scientific-Practical Materials Research Centre of NAS of Belarus, P.Brovka Str. 19, Minsk 220072, Belarus</foaf:name> </foaf:Organization> </org:memberOf> </rdf:Description> </dct:creator> <dct:creator> <rdf:Description> <rdf:type rdf:resource="http://xmlns.com/foaf/0.1/Agent"/> <foaf:name>Alexander Gurskii</foaf:name> <org:memberOf> <foaf:Organization> <foaf:name>Belarusian State University of Informatics and Radioelectronics, P.Brovka Str. 6, Minsk 220013, Belarus</foaf:name> </foaf:Organization> </org:memberOf> </rdf:Description> </dct:creator> <dct:creator> <rdf:Description> <rdf:type rdf:resource="http://xmlns.com/foaf/0.1/Agent"/> <foaf:name>Maria do RosárioTeixeira Soares</foaf:name> <org:memberOf> <foaf:Organization> <foaf:name>LCA/CICECO, Universidade de Aveiro, 3810-193 Aveiro, Portugal</foaf:name> </foaf:Organization> </org:memberOf> </rdf:Description> </dct:creator> <dct:creator> <rdf:Description> <rdf:type rdf:resource="http://xmlns.com/foaf/0.1/Agent"/> <foaf:name>Mindaugas Andrulevičius</foaf:name> <org:memberOf> <foaf:Organization> <foaf:name>Institute of Materials Science, Kaunas University of Technology, BaršauskoStr. 59, Kaunas LT-51423, Lithuania</foaf:name> </foaf:Organization> </org:memberOf> </rdf:Description> </dct:creator> <dct:creator> <rdf:Description> <rdf:type rdf:resource="http://xmlns.com/foaf/0.1/Agent"/> <foaf:name>Brigita Abakevičienė</foaf:name> <org:memberOf> <foaf:Organization> <foaf:name>Department of Physics, Kaunas University of Technology, Studentu Str. 50, Kaunas LT-51368, Lithuania</foaf:name> </foaf:Organization> </org:memberOf> </rdf:Description> </dct:creator> <dct:creator> <rdf:Description> <rdf:type rdf:resource="http://xmlns.com/foaf/0.1/Agent"/> <foaf:name>Sigitas Tamulevičius</foaf:name> <org:memberOf> <foaf:Organization> <foaf:name>Institute of Materials Science, Kaunas University of Technology, BaršauskoStr. 59, Kaunas LT-51423, Lithuania</foaf:name> </foaf:Organization> </org:memberOf> </rdf:Description> </dct:creator> <dct:title>Degree of phase transformations in the conditions of polythermal synthesis of Sr2–xBaxFeMoO6–δ</dct:title> <dct:publisher> <foaf:Agent> <foaf:name>Zenodo</foaf:name> </foaf:Agent> </dct:publisher> <dct:issued rdf:datatype="http://www.w3.org/2001/XMLSchema#gYear">2020</dct:issued> <dcat:keyword>magnetic metal oxide compound</dcat:keyword> <dcat:keyword>double perovskite</dcat:keyword> <dcat:keyword>polythermal synthesis</dcat:keyword> <dcat:keyword>differential thermal analysis</dcat:keyword> <dcat:keyword>thermogravimetric analysis</dcat:keyword> <dcat:keyword>crystallization rate</dcat:keyword> <dcat:keyword>sequence and degree of phase transformations</dcat:keyword> <frapo:isFundedBy rdf:resource="info:eu-repo/grantAgreement/EC/H2020/778308/"/> <schema:funder> <foaf:Organization> <dct:identifier rdf:datatype="http://www.w3.org/2001/XMLSchema#string">10.13039/100010661</dct:identifier> <foaf:name>European Commission</foaf:name> </foaf:Organization> </schema:funder> <dct:issued rdf:datatype="http://www.w3.org/2001/XMLSchema#date">2020-04-30</dct:issued> <dct:language rdf:resource="http://publications.europa.eu/resource/authority/language/ENG"/> <owl:sameAs rdf:resource="https://zenodo.org/record/3700064"/> <adms:identifier> <adms:Identifier> <skos:notation rdf:datatype="http://www.w3.org/2001/XMLSchema#anyURI">https://zenodo.org/record/3700064</skos:notation> <adms:schemeAgency>url</adms:schemeAgency> </adms:Identifier> </adms:identifier> <dct:hasVersion rdf:resource="https://doi.org/10.1016/j.vacuum.2020.109196"/> <dct:isVersionOf rdf:resource="https://doi.org/10.5281/zenodo.3700063"/> <owl:versionInfo>Author Accepted Manuscript</owl:versionInfo> <dct:description><p>The sequence of phase transformations during the crystallization of SrBaFeMoO<sub>6&ndash;&delta; </sub>by the solid-phase technique from a stoichiometric mixture of simple oxides SrCO<sub>3</sub> + BaCO<sub>3</sub> + 0.5Fe<sub>2</sub>O<sub>3</sub> + MoO<sub>3</sub>was studied. It has been established that the synthesis of barium &ndash; strontium ferromolybdate proceeds through a series of sequential - parallel stages. It was found that to minimize the effect of intermediate reaction products, it is necessary to use combined synthesis modes. As a result of using combined synthesis modes for annealing for 20 hours and T = 1443 K in vacuum of 10<sup>-5</sup>Torr at the pressure of residual oxygen gas 10<sup>-8 </sup>Pa, it was possible to obtain a single-phase barium &ndash; strontium ferromolybdate compound with superstructural ordering of iron and molybdenum cations.</p></dct:description> <dct:accessRights rdf:resource="http://publications.europa.eu/resource/authority/access-right/PUBLIC"/> <dct:accessRights> <dct:RightsStatement rdf:about="info:eu-repo/semantics/openAccess"> <rdfs:label>Open Access</rdfs:label> </dct:RightsStatement> </dct:accessRights> <dct:license rdf:resource="https://creativecommons.org/licenses/by/4.0/legalcode"/> <dcat:distribution> <dcat:Distribution> <dcat:accessURL rdf:resource="https://doi.org/10.5281/zenodo.3700064"/> <dcat:byteSize>792338</dcat:byteSize> <dcat:downloadURL rdf:resource="https://zenodo.org/record/3700064/files/Kalanda et al (AAM) - Vacuum 174 (2020) 109196.pdf"/> <dcat:mediaType>application/pdf</dcat:mediaType> </dcat:Distribution> </dcat:distribution> </rdf:Description> <foaf:Project rdf:about="info:eu-repo/grantAgreement/EC/H2020/778308/"> <dct:identifier rdf:datatype="http://www.w3.org/2001/XMLSchema#string">778308</dct:identifier> <dct:title>Physical principles of the creation of novel SPINtronic materials on the base of MULTIlayered metal-oxide FILMs for magnetic sensors and MRAM</dct:title> <frapo:isAwardedBy> <foaf:Organization> <dct:identifier rdf:datatype="http://www.w3.org/2001/XMLSchema#string">10.13039/100010661</dct:identifier> <foaf:name>European Commission</foaf:name> </foaf:Organization> </frapo:isAwardedBy> </foaf:Project> </rdf:RDF>
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