A new topology of hexanuclear [MnIII4LnIII2] clusters: syntheses, structures, and magnetic properties†
Abstract
Reactions of manganese nitrate and lanthanide nitrate hexahydrate with 2-(hydroxymethyl)pyridine (hmpH) and sodium propionate as co-ligands in the mixed solutions of acetonitrile and ethanol generated two hexanuclear Mn–Ln compounds [Mn4Ln2O2(OH)(hmp)5(EtCO2)3(MeCN)(NO3)5(H2O)] [Ln = La (1), Nd (2)]. Compounds 1 and 2 are isostructural and possess a core of [MnIII4LnIII2(μ3-OR)3(μ3-O)2(μ2-O)3]5+, which comprises three face-sharing defect cubane units. The core topology represents a new core type of Mn–Ln cluster. The soild-state dc magnetic susceptibility analyses indicate antiferromagnetic interactions within the two compounds. Compound 1 possesses an S = 0 ground state spin, fitting of the dc data for a tetranuclear MnIII4 with the Magpack program gives parameters of J1 = −0.50 cm−1, J2 = −5.03 cm−1, J3 = 3.77 cm−1 and g = 1.95.