Depending on the synthetic conditions, five heterometallic MnIIIFeII polynuclear compounds with the same ratio of constituents, 2[Mn(acacen)]+/[Fe(CN)5NO]2−, of different nuclearity and dimensionality (0D, 1D, 2D) were isolated. A [Mn(acacen)MeOH]2[Fe(CN)5NO]·1.5MeOH, 1 complex has been prepared by reaction of MnIII/Schiff base (SB) complex, [Mn(acacen)Cl] (H2acacen is N,N′-ethylenebis(acetylacetoneimine)) with sodium nitroprusside (NP). Single crystal X-ray diffraction analyses reveal that crystallization of 1 from coordinating or non-coordinating solvents results in different coordination polynuclear materials: from C2H5OH [{Mn(acacen)H2O}2Fe(CN)5NO]·C2H5OH, 2, a trinuclear complex is formed; from CH3CN [{Mn(acacen)H2O}4Fe(CN)5NO][Fe(CN)5NO]·4CH3CN, an ionic compound with a pentanuclear bimetallic cation is formed 3; from i-C3H7OH [{Mn(acacen)}2(i-PrOH)Fe(CN)5NO]n, a coordination chain polymer 4 is formed; from toluene [{Mn(acacen)}2Fe(CN)5NO]n, a layered network 5 is formed. As the magnetic measurements show, for all compounds the weak interaction between MnIIIS = 2 spins through the NP bridge is antiferromagnetic and exhibits no significant photoactivity.
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