The employment of the 1,3-bis(dimethylamino)-2-propanolate (bdmap) ligand as a chelating/bridging ligand in manganese chemistry is described. The reaction of Mn(R-BzO)2 and bdmap affords [Mn8(O)4(R-BzO)12(bdmap)2(H2O)2], R = H (1), R = 3-Cl (2) and R = 4-Cl (3), which are mixed-valence MnII2MnIII6 clusters. Structural characterization was achieved for 1 and 2, which can be described as a central double defective dicubane MnIII4 subunit, capped by two oxo-bridged MnII-μ(bdmap)-MnIII dinuclear units. DC variable-temperature magnetic susceptibility studies were carried out in the 2–300 K range, revealing an overall antiferromagnetic behaviour for 1–3. This work demonstrates for the first time the ability of this kind of polytopic ligands in high nuclearity manganese chemistry.
Escuer, A., Vicente, R., El Fallah, S., Sanudo, E.C., Teat, S.J., Fabrizi De Biani, F., et al. (2009). Octanuclear manganese(II,III) clusters stabilized with diamino-alcoxo ligands. DALTON TRANSACTIONS(44), 9924-9928 [10.1039/b909371k].
Octanuclear manganese(II,III) clusters stabilized with diamino-alcoxo ligands
Fabrizi De Biani, Fabrizia;Zanello, Piero
2009-01-01
Abstract
The employment of the 1,3-bis(dimethylamino)-2-propanolate (bdmap) ligand as a chelating/bridging ligand in manganese chemistry is described. The reaction of Mn(R-BzO)2 and bdmap affords [Mn8(O)4(R-BzO)12(bdmap)2(H2O)2], R = H (1), R = 3-Cl (2) and R = 4-Cl (3), which are mixed-valence MnII2MnIII6 clusters. Structural characterization was achieved for 1 and 2, which can be described as a central double defective dicubane MnIII4 subunit, capped by two oxo-bridged MnII-μ(bdmap)-MnIII dinuclear units. DC variable-temperature magnetic susceptibility studies were carried out in the 2–300 K range, revealing an overall antiferromagnetic behaviour for 1–3. This work demonstrates for the first time the ability of this kind of polytopic ligands in high nuclearity manganese chemistry.File | Dimensione | Formato | |
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https://hdl.handle.net/11365/23449
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