[Mn(terpy)Sb₂S₄]ₙ, a 1D Network of MnSb₄S₅ Rings Exhibiting a Pronounced Magnetocaloric Effect and Luminescence

The solvothermal reaction of an aqueous solution of Na3SbS3 or Schlippe's Salt (Na3SbS4·9H2O) in the presence of Mn(ClO4)2·6H2O and terpy (terpy = 2,2':6',2''-terpyridine) or the [Mn(terpy)]2+ complex led to crystallization of the new compound [Mn(terpy)Sb2S4]n (I). The unique crystal structure of I features chains formed by fused MnSb4S5 rings. The Mn2+ cation is coordinated by one terpy ligand and two S2– anions resulting in a distorted MnN3S2 trigonal bipyramid. The terpy ligands point to the exterior of the chains, distances between neighbored ligands indicate π···π stacking. Magnetic investigations show paramagnetic behavior (µeff = 5.92 µB/Mn2+ at room temperature). Field-dependent magnetic susceptibility measurements at different temperatures evidence a significant magnetocaloric effect of –ΔS = 20.54 J kg–1 K–1 at T = 2 K for a magnetic field change of ΔB = 9 T. The compound exhibits blue luminescence, and a detailed analysis allowed assignment of the emission and excitation bands to the different constituents of the compound.

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