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dc.contributor.authorRuseikina, A. V.en
dc.contributor.authorSolovyov, L. A.en
dc.contributor.authorChernyshev, V. А.en
dc.contributor.authorAleksandrovsky, A. S.en
dc.contributor.authorAndreev, O. V.en
dc.contributor.authorKrylova, S. N.en
dc.contributor.authorKrylov, A. S.en
dc.contributor.authorVelikanov, D. А.en
dc.contributor.authorMolokeev, M. S.en
dc.contributor.authorMaximov, N. G.en
dc.contributor.authorGrigoriev, M. V.en
dc.contributor.authorGarmonov, A. A.en
dc.contributor.authorMatigorov, A. V.en
dc.date.accessioned2021-08-31T14:59:24Z-
dc.date.available2021-08-31T14:59:24Z-
dc.date.issued2019-
dc.identifier.citationSynthesis, structure, and properties of EuErCuS3 / A. V. Ruseikina, L. A. Solovyov, V. А. Chernyshev, et al. — DOI 10.1016/j.jallcom.2019.07.059 // Journal of Alloys and Compounds. — 2019. — Vol. 805. — P. 779-788.en
dc.identifier.issn9258388-
dc.identifier.otherFinal2
dc.identifier.otherAll Open Access, Green3
dc.identifier.otherhttps://www.scopus.com/inward/record.uri?eid=2-s2.0-85069606556&doi=10.1016%2fj.jallcom.2019.07.059&partnerID=40&md5=a42706005effd28a985d7c897c9da5a7
dc.identifier.otherhttp://elib.sfu-kras.ru/bitstream/2311/129796/1/jalcom-s-19-05136_0.pdfm
dc.identifier.urihttp://elar.urfu.ru/handle/10995/101727-
dc.description.abstractThe crystal structure of the first-synthesized compound EuErCuS3 was determined from X-ray powder diffraction data: orthorhombic crystal system, space group Pnma, structural type Eu2CuS3: a = 10.1005(2) Å, b = 3.91255(4)Å, c = 12.8480(2) Å; V = 507.737(14) Å3, Z = 4, and ρx = 6.266 g/cm3. The temperatures and enthalpies of reversible polymorphic transitions and incongruent melting of the compound were determined by DSC: Tα↔β = 1524 K, ΔНα↔β = 2.3 ± 0.2 kJ∙mol−1; Tβ↔γ = 1575 K, ΔНβ↔γ = 0.7 ± 0.1 kJ∙mol−1; Tγ↔δ = 1602 K; ΔНγ↔δ = 1.3 ± 0.1 kJ∙mol−1 and Tcr = 1735 ± 10 K, ΔНcr = −3.5 ± 0.3 kJ∙mol−1. IR spectra were recorded in the range from 50 to 400 cm−1. The compound was found to be IR-transparent in the range 4000–400 cm−1. The compound was characterized by Raman spectroscopy. The observed spectra featured both Raman lines and luminescence. Ab initio calculations of the EuErCuS3 crystal structure and phonon spectrum were performed, the frequencies and types of fundamental modes were determined, and the involvement of constituent ions in the IR and Raman modes was assessed from an analysis of the ab initio displacement vectors. The vibrational spectra were interpreted. EuErCuS3 manifests a ferrimagnetic transition at 4.8 K. Its microhardness is 2850 MPa. The obtained data can serve as the basis for predicting the properties of EuLnCuS3 compounds. Valence states for Eu (2+) and Er (3+) are proved both by the XRD and optical methods. Optical band gap was found to be 1.934 eV from diffuse reflectance spectrum. © 2019 Elsevier B.V.en
dc.format.mimetypeapplication/pdfen
dc.language.isoenen
dc.publisherElsevier Ltden
dc.rightsinfo:eu-repo/semantics/openAccessen
dc.sourceJ Alloys Compd2
dc.sourceJournal of Alloys and Compoundsen
dc.subjectINORGANIC MATERIALSen
dc.subjectMAGNETIC MEASUREMENTSen
dc.subjectOPTICAL SPECTROSCOPYen
dc.subjectSPECTROSCOPYen
dc.subjectTHERMOCHEMISTRYen
dc.subjectX-RAY DIFFRACTIONen
dc.subjectCALCULATIONSen
dc.subjectCOPPER COMPOUNDSen
dc.subjectCRYSTAL STRUCTUREen
dc.subjectENERGY GAPen
dc.subjectERBIUM COMPOUNDSen
dc.subjectEUROPIUM COMPOUNDSen
dc.subjectMAGNETIC VARIABLES MEASUREMENTen
dc.subjectPHONONSen
dc.subjectSPECTROSCOPYen
dc.subjectTHERMOCHEMISTRYen
dc.subjectX RAY DIFFRACTIONen
dc.subjectX RAY POWDER DIFFRACTIONen
dc.subjectAB INITIO CALCULATIONSen
dc.subjectDIFFUSE REFLECTANCE SPECTRUMen
dc.subjectDISPLACEMENT VECTORSen
dc.subjectFUNDAMENTAL MODESen
dc.subjectINORGANIC MATERIALSen
dc.subjectOPTICAL SPECTROSCOPYen
dc.subjectORTHORHOMBIC CRYSTAL SYSTEMen
dc.subjectPOLYMORPHIC TRANSITIONSen
dc.subjectSULFUR COMPOUNDSen
dc.titleSynthesis, structure, and properties of EuErCuS3en
dc.typeArticleen
dc.typeinfo:eu-repo/semantics/articleen
dc.typeinfo:eu-repo/semantics/publishedVersionen
dc.identifier.doi10.1016/j.jallcom.2019.07.059-
dc.identifier.scopus85069606556-
local.contributor.employeeRuseikina, A.V., Institute of Chemistry, University of Tyumen, Tyumen, 625003, Russian Federation
local.contributor.employeeSolovyov, L.A., Institute of Chemistry and Chemical Technology, Federal Research Center KSC SB RAS, Krasnoyarsk, 660049, Russian Federation
local.contributor.employeeChernyshev, V.А., Institute of Natural Sciences and Mathematics, Ural Federal University, Ekaterinburg, 620002, Russian Federation
local.contributor.employeeAleksandrovsky, A.S., Laboratory of Coherent Optics, Kirensky Institute of Physics, Federal Research Center KSC SB RAS, Krasnoyarsk, 660036, Russian Federation, Department of Photonics and Laser Technologies, Siberian Federal University, Krasnoyarsk, 660079, Russian Federation
local.contributor.employeeAndreev, O.V., Institute of Chemistry, University of Tyumen, Tyumen, 625003, Russian Federation
local.contributor.employeeKrylova, S.N., Laboratory of Coherent Optics, Kirensky Institute of Physics, Federal Research Center KSC SB RAS, Krasnoyarsk, 660036, Russian Federation
local.contributor.employeeKrylov, A.S., Laboratory of Coherent Optics, Kirensky Institute of Physics, Federal Research Center KSC SB RAS, Krasnoyarsk, 660036, Russian Federation
local.contributor.employeeVelikanov, D.А., Laboratory of Coherent Optics, Kirensky Institute of Physics, Federal Research Center KSC SB RAS, Krasnoyarsk, 660036, Russian Federation
local.contributor.employeeMolokeev, M.S., Laboratory of Crystal Physics, Kirensky Institute of Physics, Federal Research Center KSC SB RAS, Krasnoyarsk, 660036, Russian Federation, Siberian Federal University, Krasnoyarsk, 660079, Russian Federation
local.contributor.employeeMaximov, N.G., Institute of Chemistry and Chemical Technology SB RAS, Federal Research Center “Krasnoyarsk Science Center SB RAS”, Russian Federation
local.contributor.employeeGrigoriev, M.V., Institute of Chemistry, University of Tyumen, Tyumen, 625003, Russian Federation
local.contributor.employeeGarmonov, A.A., Institute of Physics and Technology, University of Tyumen, Tyumen, 625003, Russian Federation
local.contributor.employeeMatigorov, A.V., Institute of Chemistry, University of Tyumen, Tyumen, 625003, Russian Federation
local.description.firstpage779-
local.description.lastpage788-
local.volume805-
local.contributor.departmentInstitute of Chemistry, University of Tyumen, Tyumen, 625003, Russian Federation
local.contributor.departmentInstitute of Chemistry and Chemical Technology, Federal Research Center KSC SB RAS, Krasnoyarsk, 660049, Russian Federation
local.contributor.departmentInstitute of Natural Sciences and Mathematics, Ural Federal University, Ekaterinburg, 620002, Russian Federation
local.contributor.departmentLaboratory of Coherent Optics, Kirensky Institute of Physics, Federal Research Center KSC SB RAS, Krasnoyarsk, 660036, Russian Federation
local.contributor.departmentDepartment of Photonics and Laser Technologies, Siberian Federal University, Krasnoyarsk, 660079, Russian Federation
local.contributor.departmentLaboratory of Crystal Physics, Kirensky Institute of Physics, Federal Research Center KSC SB RAS, Krasnoyarsk, 660036, Russian Federation
local.contributor.departmentSiberian Federal University, Krasnoyarsk, 660079, Russian Federation
local.contributor.departmentInstitute of Chemistry and Chemical Technology SB RAS, Federal Research Center “Krasnoyarsk Science Center SB RAS”, Russian Federation
local.contributor.departmentInstitute of Physics and Technology, University of Tyumen, Tyumen, 625003, Russian Federation
local.identifier.pure10267650-
local.identifier.purec4a41c5a-7434-41c6-a135-8c16c867e870uuid
local.identifier.eid2-s2.0-85069606556-
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