Yayın:
Structural, electrical and mechanical properties of selenium doped thallium based high-temperature superconductors

dc.contributor.authorAsikuzun, E.
dc.contributor.authorCavdar, Şükrü
dc.contributor.authorKoralay, Haluk
dc.contributor.authorTasci, A. T.
dc.contributor.authorOzturk, O.
dc.contributor.authorKol, N.
dc.date.accessioned2026-01-02T23:32:06Z
dc.date.issued2016-01-01
dc.description.abstractAbstract In this study, highly-refined chemical powders were synthesized by having them ready in appropriate stoichiometric proportions with conventional solid state reaction method so that they would produce the superconductor TlPb 0.3 Sr 2 Ca 1− x Se x Cu 2 O y ( x  = 0; 0.4; 0.6; 1.0). This study aims to understand effect of the selenium doping on the superconducting, structural and mechanical properties of the aforementioned superconducting material. The effect of the doping rates on the structural and electrical properties of the sample has been identified. Electrical characteristics of the TlPb 0.3 Sr 2 Ca 1− x Se x Cu 2 O y material were measured using standard four point probe method. Structural characteristics were examined with the powder X-ray diffractometer (XRD) and scanning electron microscope (SEM). Mechanical properties were analyzed with Vickers microhardness measurements on the sample surface. According to the results, it was observed that the reflection comes from the ( 00l ) and parallel planes increased with Se doping. Particle size increases with increasing doping ratio. According to results of the mechanical measurements, all samples exhibit indentation size effect (ISE) behavior. Comparing the obtained results with theoretical studies, it was understood that Hays Kendall approach is the best method in determination of mechanical properties and analyzing microhardness of the materials.
dc.description.urihttps://doi.org/10.1016/j.cryogenics.2015.10.019
dc.description.urihttps://dx.doi.org/10.1016/j.cryogenics.2015.10.019
dc.description.urihttps://avesis.gazi.edu.tr/publication/details/3793cb1b-f4b2-469d-8c1b-fe6bd339f4e9/oai
dc.identifier.doi10.1016/j.cryogenics.2015.10.019
dc.identifier.endpage7
dc.identifier.issn0011-2275
dc.identifier.openairedoi_dedup___::5be9b356ff055474c2796dbd502162a1
dc.identifier.orcid0000-0001-6079-7048
dc.identifier.orcid0000-0001-7893-344x
dc.identifier.scopus2-s2.0-84947997515
dc.identifier.startpage1
dc.identifier.urihttps://hdl.handle.net/20.500.12597/36087
dc.identifier.volume73
dc.identifier.wos000369677600001
dc.language.isoeng
dc.publisherElsevier BV
dc.relation.ispartofCryogenics
dc.rightsCLOSED
dc.titleStructural, electrical and mechanical properties of selenium doped thallium based high-temperature superconductors
dc.typeArticle
dspace.entity.typePublication
local.api.response{"authors":[{"fullName":"Asikuzun, E.","name":"E.","surname":"Asikuzun","rank":1,"pid":null},{"fullName":"Cavdar, ŞÜKRÜ","name":"Şükrü","surname":"Cavdar","rank":2,"pid":{"id":{"scheme":"orcid","value":"0000-0001-6079-7048"},"provenance":null}},{"fullName":"KORALAY, HALUK","name":"Haluk","surname":"Koralay","rank":3,"pid":{"id":{"scheme":"orcid","value":"0000-0001-7893-344x"},"provenance":null}},{"fullName":"Tasci, A. T.","name":"A. T.","surname":"Tasci","rank":4,"pid":null},{"fullName":"Ozturk, O.","name":"O.","surname":"Ozturk","rank":5,"pid":null},{"fullName":"Kol, N.","name":"N.","surname":"Kol","rank":6,"pid":null}],"openAccessColor":null,"publiclyFunded":false,"type":"publication","language":{"code":"eng","label":"English"},"countries":null,"subjects":[{"subject":{"scheme":"FOS","value":"0103 physical sciences"},"provenance":null},{"subject":{"scheme":"FOS","value":"01 natural sciences"},"provenance":null}],"mainTitle":"Structural, electrical and mechanical properties of selenium doped thallium based high-temperature superconductors","subTitle":null,"descriptions":["Abstract In this study, highly-refined chemical powders were synthesized by having them ready in appropriate stoichiometric proportions with conventional solid state reaction method so that they would produce the superconductor TlPb 0.3 Sr 2 Ca 1− x Se x Cu 2 O y ( x  = 0; 0.4; 0.6; 1.0). This study aims to understand effect of the selenium doping on the superconducting, structural and mechanical properties of the aforementioned superconducting material. The effect of the doping rates on the structural and electrical properties of the sample has been identified. Electrical characteristics of the TlPb 0.3 Sr 2 Ca 1− x Se x Cu 2 O y material were measured using standard four point probe method. Structural characteristics were examined with the powder X-ray diffractometer (XRD) and scanning electron microscope (SEM). Mechanical properties were analyzed with Vickers microhardness measurements on the sample surface. According to the results, it was observed that the reflection comes from the ( 00l ) and parallel planes increased with Se doping. Particle size increases with increasing doping ratio. According to results of the mechanical measurements, all samples exhibit indentation size effect (ISE) behavior. Comparing the obtained results with theoretical studies, it was understood that Hays Kendall approach is the best method in determination of mechanical properties and analyzing microhardness of the materials."],"publicationDate":"2016-01-01","publisher":"Elsevier BV","embargoEndDate":null,"sources":["Crossref"],"formats":null,"contributors":null,"coverages":null,"bestAccessRight":{"code":"c_14cb","label":"CLOSED","scheme":"http://vocabularies.coar-repositories.org/documentation/access_rights/"},"container":{"name":"Cryogenics","issnPrinted":"0011-2275","issnOnline":null,"issnLinking":null,"ep":"7","iss":null,"sp":"1","vol":"73","edition":null,"conferencePlace":null,"conferenceDate":null},"documentationUrls":null,"codeRepositoryUrl":null,"programmingLanguage":null,"contactPeople":null,"contactGroups":null,"tools":null,"size":null,"version":null,"geoLocations":null,"id":"doi_dedup___::5be9b356ff055474c2796dbd502162a1","originalIds":["S0011227515001459","10.1016/j.cryogenics.2015.10.019","50|doiboost____|5be9b356ff055474c2796dbd502162a1","1846320856","3793cb1b-f4b2-469d-8c1b-fe6bd339f4e9","50|od_____10046::9aa5af8838ee0618635326c91899da79"],"pids":[{"scheme":"doi","value":"10.1016/j.cryogenics.2015.10.019"}],"dateOfCollection":null,"lastUpdateTimeStamp":null,"indicators":{"citationImpact":{"citationCount":6,"influence":2.897128e-9,"popularity":3.3650784e-9,"impulse":3,"citationClass":"C5","influenceClass":"C5","impulseClass":"C5","popularityClass":"C5"}},"instances":[{"pids":[{"scheme":"doi","value":"10.1016/j.cryogenics.2015.10.019"}],"license":"Elsevier TDM","type":"Article","urls":["https://doi.org/10.1016/j.cryogenics.2015.10.019"],"publicationDate":"2016-01-01","refereed":"peerReviewed"},{"alternateIdentifiers":[{"scheme":"mag_id","value":"1846320856"},{"scheme":"doi","value":"10.1016/j.cryogenics.2015.10.019"}],"type":"Article","urls":["https://dx.doi.org/10.1016/j.cryogenics.2015.10.019"],"refereed":"nonPeerReviewed"},{"alternateIdentifiers":[{"scheme":"doi","value":"10.1016/j.cryogenics.2015.10.019"}],"type":"Article","urls":["https://avesis.gazi.edu.tr/publication/details/3793cb1b-f4b2-469d-8c1b-fe6bd339f4e9/oai"],"publicationDate":"2016-01-01","refereed":"nonPeerReviewed"}],"isGreen":false,"isInDiamondJournal":false}
local.import.sourceOpenAire
local.indexed.atWOS
local.indexed.atScopus

Dosyalar

Koleksiyonlar