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Chiral single-molecule magnet with a 35 K energy barrier for relaxation of the magnetization
Authors:Ghenadie Novitchi  Guillaume Pilet  Dominique Luneau
Affiliation:1. Université Claude-Bernard Lyon-1, laboratoire des multimatériaux et interfaces, UMR 5615, campus de la Doua, 69622 Villeurbanne, France;2. Laboratoire national des champs magnétiques intenses, CNRS UPR 3228, 25, rue des Martyrs, 38042 Grenoble, France
Abstract:The reaction of [MnII(S-mandelato)2] complexes with 5-Methyl-salicylaldoxim (5-Me-saloxH2) leads to the chiral hexanuclear manganese(III) complex [Mn63-O)2(5-Me-salox)6(S-mandelato)2(EtOH)6]. The structure can be viewed as two neutral stacked {Mn33-O)(5-Me-salox)3(S-mandelato)(EtOH)3} triangular subunits linked together in a head-to-tail manner by two phenoxo and two oximato μ3-oxygen atoms of the deprotonated oxime groups of the ligands. The magnetic study of this chiral hexanuclear manganese(III) complex reveals a SMM behaviour with an energy barrier of the slow relaxation of the magnetisation equal to 35 K. Considering the structural features, the fitting of the temperature dependence of the magnetic susceptibility gives a good agreement with the experimental data considering two sets of interactions: J1 = +0.37 cm−1 and J2 = −0.70 cm−1 within (ferromagnetic) and between (antiferromagnetic), respectively, the {Mn33-O)(5-Me-salox)3(S-mandelato)(EtOH)3} triangular subunits.
Keywords:Manganese(III)   Chiral   Salicylaldoxime   Mandelic acid   Magnetism   Single-molecule magnets
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