화학공학소재연구정보센터
Inorganic Chemistry, Vol.44, No.26, 9714-9722, 2005
Syntheses, crystal structures, and spectroscopic and magnetic properties of [Mn-2(III)(H2L1)(Cl(4)Cat)(4)center dot 2H(2)O](infinity) and [Mn-2(III)(H2L2)(Cl(4)Cat)(4)center dot 2CH(3)CN center dot 2H(2)O](infinity): Temperature-dependent valence tautomerism in solution
The synthesis, X-ray data, and electronic structures of two manganese(l 11) 1 D polymers ligated by tetrachlorocatechol, [Mn-2(III)(H2L1)(Cl(4)Cat)(4)center dot 2H(2)O](infinity) (1) and [Mn-2(III)(H2L2)(Cl(4)Cat)(4)center dot 2CH(3)CN-2H(2)O](infinity) (2), are reported. The electronic structures of the complexes have been determined by UV-vis-near-R, IR, electron paramagnetic resonance (EPR), and magnetic susceptibility measurements. Both I and 2 are air stable in the solid state and in solution, unlike most of the previously reported o-quinone-chelated transition-metal complexes. Electronic spectroscopy exhibits a strong near-IR band near 1900 nm for both, suggesting the presence of a mixed-valence semiquinone-catecholate oxidation state of the catechol ligands, Mn-2(III)(Cl(4)Cat)(2)(Cl(4)SQ)(2), together with the pure catecholate forms. The presence of this isomer was further supported by EPR and magnetic susceptibility measurements. The complexes undergo intramolecular electron transfer (valence tautomerism) upon an increase of the temperature involving the equilibrium Mn-2(III)(Cl(4)Cat)(2)(Cl(4)SQ)(2) reversible arrow Mn-2(II)(Cl(4)SQ)(4). This phenomenon is reversible and is studied in solution using UV-visnear-IR spectroscopy.