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Coordination-Induced Band Gap Reduction in a Metal-Organic Framework

dc.contributor.authorPeeples, Craig A.
dc.contributor.authorCetinkaya, Ahmet
dc.contributor.authorTholen, Patrik
dc.contributor.authorSchmitt, Franz-Josef
dc.contributor.authorZorlu, Yunus
dc.contributor.authorYu, Kai Bin
dc.contributor.authorYazaydin, Ozgur
dc.contributor.authorBeckmann, Jens
dc.contributor.authorHanna, Gabriel
dc.contributor.authorYucesan, Andog
dc.date.accessioned2026-06-27T14:46:52Z
dc.date.issued2022
dc.description.abstractHerein, we report on the synthesis of a microporous, three-dimensional phosphonate metal-organic framework (MOF) with the composition Cu-3(H-5-MTPPA)(2) . 2 NMP (H-8-MTPPA=methane tetra-p-phenylphosphonic acid and NMP=N-methyl-2-pyrrolidone). This MOF, termed TUB1, has a unique one-dimensional inorganic building unit composed of square planar and distorted trigonal bipyramidal copper atoms. It possesses a (calculated) BET surface area of 766.2 m(2)/g after removal of the solvents from the voids. The Tauc plot for TUB1 yields indirect and direct band gaps of 2.4 eV and 2.7 eV, respectively. DFT calculations reveal the existence of two spin-dependent gaps of 2.60 eV and 0.48 eV for the alpha and beta spins, respectively, with the lowest unoccupied crystal orbital for both gaps predominantly residing on the square planar copper atoms. The projected density of states suggests that the presence of the square planar copper atoms reduces the overall band gap of TUB1, as the beta-gap for the trigonal bipyramidal copper atoms is 3.72 eV.en
dc.description.sponsorshipDFG [BE 3716/9-1, DFG YU 267/2-1]
dc.description.sponsorshipNatural Sciences and Engineering Research Council of Canada (NSERC)
dc.description.sponsorshipWestGrid
dc.description.sponsorshipCompute Canada
dc.description.sponsorshipProjekt DEAL
dc.description.urihttps://doi.org/10.1002/chem.202104041
dc.identifier.doi10.1002/chem.202104041
dc.identifier.eissn1521-3765
dc.identifier.issn0947-6539
dc.identifier.issue8
dc.identifier.pubmed34806792
dc.identifier.urihttps://hdl.handle.net/20.500.14981/64681
dc.identifier.volume28
dc.identifier.wos000739137700001
dc.language.isoeng
dc.publisherWILEY-V C H VERLAG GMBH
dc.relation.ispartofCHEMISTRY-A EUROPEAN JOURNAL
dc.rightsopenAccess
dc.subjectDensity of States
dc.subjectLigand Design
dc.subjectMetal-Organic Framework (MOF)
dc.subjectSolvothermal Synthesis
dc.subjectSurface Area
dc.subjectELECTRICAL-CONDUCTIVITY
dc.subjectPLATFORM
dc.subjectSOLIDS
dc.subjectFUNCTIONALIZATION
dc.subjectCHEMISTRY
dc.subjectDESIGN
dc.subjectCARBON
dc.titleCoordination-Induced Band Gap Reduction in a Metal-Organic Framework
dc.typeArticle
dspace.entity.typePublication
local.import.sourceWOS

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