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Manganese(II) complexes of di-2-pyridinylmethylene-1,2-diimine di-Schiff base ligands: Structures and reactivity
Authors:Shadrick I.M. Paris  Shengwen Liang  Steffen Tschirschwitz  Mark C. McMills  Jeffrey L. Petersen  Michael P. Jensen
Affiliation:a Department of Chemistry and Biochemistry, Ohio University, Athens, OH 45701, USA
b Fakultät für Chemie und Mineralogie, Institut für Anorganische Chemie, Universität Leipzig, Johannisallee 29, D-04103 Leipzig, Germany
c C. Eugene Bennett Department of Chemistry, West Virginia University, Morgantown, WV 26506, USA
Abstract:Manganese(II) complexes [Mn(L)X2] were prepared and characterized, where L is a neutral di-Schiff base ligand incorporating pyridylimine donor arms, including (1R,2R)-N,N′-bis(2-pyridylmethylidene)-1,2-diphenylethylenediimine (L1), (1R,2R)-N,N′-bis(6-methyl-2-pyridylmethylidene)-1,2-cyclohexyldiimine (L2), or (1R,2R)-, (1S,2S)- or racemic N,N′-bis(2-pyridylmethylidene)-1,2-cyclohexyldiimine (L3), and X = View the MathML source or Cl. Product complexes were structurally characterized, specifically including [Mn(R,R-L1)(NCCH3)3](ClO4)2, [Mn(R,R-L2)(OH2)2](ClO4)2 and racemic [Mn(L3)Cl2]. The first of these complexes features a heptacoordinate ligand field in a distorted pentagonal bipyramid, and the latter two are hexacoordinate, but retain equatorially monovacant pentagonal bipyramidal structures. Complexes [Mn(L3)X2] (X = Cl, View the MathML source) were reacted with the primary phosphine FcCH2PH2 (Fc = -C5H4FeC5H5), H2O and ethyldiazoacetate (EDA). The first two substrates prompted reactivity at a single ligand imine bond, resulting in hydrophosphination and hydrolysis, respectively. Complexes of the derivative ligands were also structurally characterized. Evidence for EDA activation was obtained by electrospray ionization mass spectrometry, but catalytic carbene transfer was not obtained.
Keywords:Manganese   Schiff base   Pentagonal bipyramidal   Phosphine   Ethyldiazoacetate   Imine
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