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Investigation of structural, lectronic and magnetic properties of breathing metal-organic framework MIL-47 (Mn): a first principles approach

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cris.virtual.department#PLACEHOLDER_PARENT_METADATA_VALUE#
cris.virtual.orcid0000-0001-5919-7336
cris.virtualsource.departmentee53fa57-629e-40d5-b433-6f4ba4220134
cris.virtualsource.orcidee53fa57-629e-40d5-b433-6f4ba4220134
dc.contributor.authorHosseini, Mohammadrezza
dc.contributor.authorVanpoucke, Danny
dc.contributor.authorGiannozzi, Paolo
dc.contributor.authorBerahman, Masoud
dc.contributor.authorHadipour, Nasser
dc.date.accessioned2021-10-28T22:36:47Z
dc.date.available2021-10-28T22:36:47Z
dc.date.embargo9999-12-31
dc.date.issued2020
dc.description.abstractThe structural, electronic and magnetic properties of the MIL-47(Mn) metal–organic framework are investigated using first principles calculations. We find that the large-pore structure is the ground state of this material. We show that upon transition from the large-pore to the narrow-pore structure, the magnetic ground-state configuration changes from antiferromagnetic to ferromagnetic, consistent with the computed values of the intra-chain coupling constant. Furthermore, the antiferromagnetic and ferromagnetic configuration phases have intrinsically different electronic behavior: the former is semiconducting, the latter is a metal or half-metal. The change of electronic properties during breathing posits MIL-47(Mn) as a good candidate for sensing and other applications. Our calculated electronic band structure for MIL-47(Mn) presents a combination of flat dispersionless and strongly dispersive regions in the valence and conduction bands, indicative of quasi-1D electronic behavior. The spin coupling constants are obtained by mapping the total energies onto a spin Hamiltonian. The inter-chain coupling is found to be at least one order of magnitude smaller than the intra-chain coupling for both large and narrow pores. Interestingly, the intra-chain coupling changes sign and becomes five times stronger going from the large pore to the narrow pore structure. As such MIL-47(Mn) could provide unique opportunities for tunable low-dimensional magnetism in transition metal oxide systems.
dc.identifier.doi10.1039/c9ra09196c
dc.identifier.issn2046-2069
dc.identifier.urihttps://imec-publications.be/handle/20.500.12860/35281
dc.source.beginpage4786
dc.source.endpage4794
dc.source.issue8
dc.source.journalRSC Advances
dc.source.volume20
dc.title

Investigation of structural, lectronic and magnetic properties of breathing metal-organic framework MIL-47 (Mn): a first principles approach

dc.typeJournal article
dspace.entity.typePublication
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