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Publication:
Pressure‐assisted dimensional transformation of 2D hydrogenated Borophene into 0d boron quantum dots

dc.contributor.coauthorYazdaanpanah, R.
dc.contributor.coauthorGuo, Y.
dc.contributor.coauthorKulkarni, S.
dc.contributor.coauthorMercurio, M.
dc.contributor.coauthorLarciprete, M. C.
dc.contributor.coauthorFratoddi, I.
dc.contributor.coauthorSimon, P.
dc.contributor.coauthorLi, W.
dc.contributor.coauthorAydin, K.
dc.contributor.departmentGraduate School of Sciences and Engineering
dc.contributor.departmentKUBAM (Koç University Boron and Advanced Materials Application and Research Center)
dc.contributor.departmentDepartment of Chemistry
dc.contributor.departmentKUYTAM (Koç University Surface Science and Technology Center)
dc.contributor.kuauthorYıldız, Özden Güneş
dc.contributor.kuauthorNaziri, Pouriya
dc.contributor.kuauthorAydemir, Umut
dc.contributor.schoolcollegeinstituteCollege of Sciences
dc.contributor.schoolcollegeinstituteResearch Center
dc.contributor.schoolcollegeinstituteGRADUATE SCHOOL OF SCIENCES AND ENGINEERING
dc.date.accessioned2026-09-15T10:55:44Z
dc.date.issued2026
dc.description.abstractBorophene is a monoelemental two‐dimensional (2D) material whose electron‐deficient bonding renders free‐standing monolayers intrinsically unstable, raising the question of how borophene can be converted into stable boron nanostructures. Borophene's structural stability and electronic properties are strongly influenced by vacancy configurations and defect engineering, while hydrogenation offers an additional pathway for stabilization and property tuning. Here, we introduce a solvent‐free solid‐state route that transforms hydrogenated borophene (HB) into either B 2 O 3 nanoplatelets or boron quantum dots (BQDs) via thermal dehydrogenation. Cleavage of B─H bonds releases hydrogen gas, whose escape under flowing N 2 facilitates structural reconstruction and leads to the formation of B 2 O 3 nanoplatelets. In sealed conditions, hydrogen accumulation generates internal pressure that drives fragmentation of the boron framework into BQDs. The resulting materials exhibit distinct photoluminescence (PL) behavior that correlates with their structural evolution, in agreement with first‐principles calculations of band‐gap changes. This work establishes solvent‐free, pressure‐assisted dimensional engineering of boron nanostructures and provides a new strategy for controlling the structural and optoelectronic properties of boron‐based materials.
dc.description.harvestedfromManual
dc.description.indexedbyN/A
dc.description.publisherscopeInternational
dc.description.readpublishWiley RP
dc.description.sponsoredbyTubitakEuEU - TÜBİTAK
dc.description.sponsorshipU.S. Department of Energy; San Diego Supercomputer Center; European Commission; Türkiye Bilimsel ve Teknolojik Araştırma Kurumu; Office of Science; University of California, San Diego; Office of Advanced Cyberinfrastructure; Basic Energy Sciences; Air Force Office of Scientific Research; Argonne National Laboratory
dc.description.versionPublished Version
dc.identifier.ScopusPercentile98
dc.identifier.ScopusQuartileQ1
dc.identifier.WoSPercentile95.8
dc.identifier.WoSQuartileQ1
dc.identifier.doi10.1002/adfm.78031
dc.identifier.eissn1616-3028
dc.identifier.endpage-
dc.identifier.grantnoFA8655‐24‐1‐7389
dc.identifier.grantnoFA9550‐22‐1‐0300
dc.identifier.grantnoFA9550‐25‐1‐0355
dc.identifier.issn1616-301X
dc.identifier.startpage-
dc.identifier.urihttp://doi.org/10.1002/adfm.78031
dc.identifier.urihttps://hdl.handle.net/20.500.14288/35446
dc.languageeng
dc.publisherWiley
dc.relation.affiliationKoç University
dc.relation.collectionKoç University Institutional Repository
dc.relation.ispartofAdvanced Functional Materials
dc.relation.openaccessN/A
dc.subjectPhysical sciences
dc.subjectMaterials science
dc.subjectMaterials chemistry
dc.titlePressure‐assisted dimensional transformation of 2D hydrogenated Borophene into 0d boron quantum dots
dc.typeJournal Article
dspace.entity.typePublication
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