Electronic structure, magnetic interactions, and the role of ligands in Mn-n(n=4,12) single-molecule magnets

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We report our first principles calculation studies of electronic structure and magnetic properties of the Mn-n (n=4,12) single-molecule magnet, i.e., [Mn4O3Cl(OAc)(3)(dbm)(3)] (dbmH=dibenzoyl-methane) and [Mn12O12(CH3COO)(16)(H2O)(4)] molecules. For the calculations, we used the localized pseudoatomic orbital method based on the density functional theory within local density approximation. To investigate the role of ligand and its contribution to the determination of the magnetic properties, we calculated the electronic structures of Mn-n clusters with different ligand configurations. The detailed analysis reveals an important contribution of the bridging carbon atoms, connecting the Mn-O core and the outer ligand complex, to the magnetic ground states of the magnetic molecules. In addition, we calculated the effective exchange-coupling constants among Mn ions.
Publisher
AMERICAN PHYSICAL SOC
Issue Date
2004-11
Language
English
Article Type
Article
Keywords

WATER OXIDATION CENTER; HIGH-SPIN MOLECULES; EXCHANGE INTERACTIONS; GROUND-STATE; ANISOTROPY; COMPLEXES; PSEUDOPOTENTIALS; POTENTIALS; CRYSTAL; CLUSTER

Citation

PHYSICAL REVIEW B, v.70, no.18, pp.108 - 114

ISSN
1098-0121
DOI
10.1103/PhysRevB.70.184421
URI
http://hdl.handle.net/10203/85870
Appears in Collection
PH-Journal Papers(저널논문)
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