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Impact of metastable graphene-diamond coatings on the fracture toughness of silicon carbide

dc.contributor.authorRejhon, Martin
dc.contributor.authorDědič, Václav
dc.contributor.authorShestopalov, Mykhailo
dc.contributor.authorKunc, Jan
dc.contributor.authorRiedo, Elisa
dc.date.accessioned2025-03-03T06:12:59Z
dc.date.available2025-03-03T06:12:59Z
dc.date.issued2024
dc.identifier.urihttps://hdl.handle.net/20.500.14178/2941
dc.description.abstractSilicon carbide has excellent mechanical properties such as high hardness and strength, but its applications for body armor and protective coating solutions are limited by its poor toughness. It has been demonstrated that epitaxial graphene-coated SiC can enhance SiC mechanical properties due to the pressure-activated phase transition into a sp(3) diamond structure. Here, we show that atomically thin graphene coatings increase the hardness of SiC even for indentation depths of similar to 10 µm. Very importantly, the graphene coating also causes an increase of the fracture toughness by 11% compared to bare SiC, which is in contradiction with the general indirect variation of hardness and fracture toughness. This is explained in terms of the presence of a diamond phase under the indenter while the rest of the coating remains in the ultra-tough graphene phase. This study opens new venues for understanding hardness and toughness in metastable systems and for the applications of graphene-coatings. The phase-transition of atomically thin graphene coating into a diamond phase increases the hardness and the fracture toughness of SiC even for indentation depths of 10 µm compared to bare SiC, which is against the general indirect relation.en
dc.language.isoen
dc.relation.urlhttps://doi.org/10.1039/d3nr06281c
dc.rightsCreative Commons Uveďte původ 3.0 Unportedcs
dc.rightsCreative Commons Attribution 3.0 Unporteden
dc.titleImpact of metastable graphene-diamond coatings on the fracture toughness of silicon carbideen
dcterms.accessRightsopenAccess
dcterms.licensehttps://creativecommons.org/licenses/by/3.0/legalcode
dc.date.updated2025-03-03T06:12:59Z
dc.subject.keywordgraphene-diamond coatingsen
dc.subject.keywordsilicon carbideen
dc.subject.keywordindentation fractureen
dc.subject.keywordcrystalen
dc.subject.keywordmoissaniteen
dc.subject.keywordbehavioren
dc.subject.keywordhardnessen
dc.identifier.eissn2040-3372
dc.relation.fundingReferenceinfo:eu-repo/grantAgreement/UK/COOP/COOP
dc.date.embargoStartDate2025-03-03
dc.type.obd73
dc.type.versioninfo:eu-repo/semantics/publishedVersion
dc.identifier.doi10.1039/d3nr06281c
dc.identifier.utWos001187089300001
dc.identifier.eidScopus2-s2.0-85188246781
dc.identifier.obd651566
dc.identifier.pubmed38501162
dc.subject.rivPrimary10000::10300::10302
dcterms.isPartOf.nameNanoscale
dcterms.isPartOf.issn2040-3364
dcterms.isPartOf.journalYear2024
dcterms.isPartOf.journalVolume16
dcterms.isPartOf.journalIssue22
uk.faculty.primaryId116
uk.faculty.primaryNameMatematicko-fyzikální fakultacs
uk.faculty.primaryNameFaculty of Mathematics and Physicsen
uk.department.primaryId1191
uk.department.primaryNameFyzikální ústav UKcs
uk.department.primaryNameInstitute of Physics of Charles Universityen
dc.description.pageRange10589-10596
dc.type.obdHierarchyCsČLÁNEK V ČASOPISU::článek v časopisu::původní článekcs
dc.type.obdHierarchyEnJOURNAL ARTICLE::journal article::original articleen
dc.type.obdHierarchyCode73::152::206en
uk.displayTitleImpact of metastable graphene-diamond coatings on the fracture toughness of silicon carbideen


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