화학공학소재연구정보센터
Inorganic Chemistry, Vol.50, No.12, 5596-5604, 2011
Dinuclear Cobalt(II) and Copper(II) Complexes with a Py2N4S2 Macrocyclic Ligand
The interaction between Co-II and Cu-II ions with a Py2N4S2-coordinating octadentate macrocyclic ligand (L) to afford dinuclear compounds has been investigated. The complexes were characterized by microanalysis, conductivity measurements, IR spectroscopy and liquid secondary ion mass spectrometry. The crystal structure of the compounds [H4L](NO3)(4), [Cu2LCl2]-(NO3)(2) (5), [Cu2L(NO3)(2)](NO3)(2) (6), and [Cu2L(mu-OH)](ClO4)(3)center dot H2O (7) was also determined by single-crystal X-ray diffraction. The [H4L](4+) cation crystal structure presents two different conformations, planar and step, with intermolecular face-to-face pi,pi-stacking interactions between the pyridinic rings. Complexes 5 and 6 show the metal ions in a slightly distorted square-pyramidal coordination geometry. In the case of complex 7, the crystal structure presents the two metal ions joined by a mu-hydroxo bridge and the Cu-II centers in a slightly distorted square plane or a tetragonally distorted octahedral geometry, taking into account weak interactions in axial positions. Electron paramagnetic resonance spectroscopy is in accordance with the dinuclear nature of the complexes, with an octahedral environment for the cobalt(II) compounds and square-pyramidal or tetragonally elongated octahedral geometries for the copper(II) compounds. The magnetic behavior is consistent with the existence of antiferromagnetic interactions between the ions for cobalt(II) and copper(II) complexes, while for the Coll ones, this behavior could also be explained by spin-orbit coupling.