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Synthesis and Reaction of [{HC(CMeNAr)<sub>2</sub>}Mn]<sub>2</sub> (Ar = 2,6-<i>i</i>Pr<sub>2</sub>C<sub>6</sub>H<sub>3</sub>): The Complex Containing Three-Coordinate Manganese(I) with a Mn−Mn Bond Exhibiting Unusual Magnetic Properties and Electronic Structure
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Citations
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References
2005
Year
Materials ScienceMagnetismMagnetic PropertiesInorganic ChemistrySpintronicsThree-coordinate ManganeseEngineeringMolecule-based MagnetCoordination ComplexMagnetic ResonanceMn-mn Bond EnergyMolecular ComplexDft CalculationsChemistryElectronic StructureCrystallographyInorganic SynthesisInorganic Compound
This paper reports on the synthesis, X-ray structure, magnetic properties, and DFT calculations of [[HC(CMeNAr)2]Mn]2 (Ar = 2,6-iPr2C6H3) (2), the first complex with three-coordinate manganese(I). Reduction of the iodide [[HC(CMeNAr)2]Mn(mu-I)]2 (1) with Na/K in toluene afforded 2 as dark-red crystals. The molecule of 2 contains a Mn2(2+) core with a Mn-Mn bond. The magnetic investigations show a rare example of a high-spin manganese(I) complex with an antiferromagnetic interaction between the two Mn(I) centers. The DFT calculations indicate a strong s-s interaction of the two Mn(I) ions with the open shell configuration (3d54s1). This suggests that the magnetic behavior of 2 could be correctly described as the coupling between two S1 = S2 = 5/2 spin centers. The Mn-Mn bond energy is estimated at 44 kcal mol(-1) by first principle calculations with the B3LYP functional. The further oxidative reaction of 2 with KMnO4 or O2 resulted in the formation of manganese(III) oxide [[HC(CMeNAr)2]Mn(mu-O)]2 (3). Compound 3 shows an antiferromagnetic coupling between the two oxo-bridged manganese(III) centers by magnetic measurements.
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