THE DEFORMATION OF DI-MU-HALIDE DINUCLEAR 5-COORDINATE COPPER(II) COMPLEXES IN THE CRYSTALLINE STATE

Citation
M. Bukowskastrzyzewska et al., THE DEFORMATION OF DI-MU-HALIDE DINUCLEAR 5-COORDINATE COPPER(II) COMPLEXES IN THE CRYSTALLINE STATE, Acta crystallographica. Section B, Structural science, 53, 1997, pp. 466-475
Citations number
22
Categorie Soggetti
Crystallography
ISSN journal
01087681
Volume
53
Year of publication
1997
Part
3
Pages
466 - 475
Database
ISI
SICI code
0108-7681(1997)53:<466:TDODD5>2.0.ZU;2-W
Abstract
The coordination geometries of 154 dinuclear di-mu-chloro, di-mu-bromo and di-mu-fluoro five-coordinate (4 + 1) copper(II) complexes have be en analyzed by the structural correlation method. Two reference Cu-II polyhedra have been established: (i) a trigonal bipyramid (TBP) in whi ch the equatorial bond lengths are equal, but with the symmetry at the metal often deformed from D-3h to C-2, and (ii) an elongated square p yramid (SQP), with either a pyramidally or tetrahedrally distorted bas e, in which the trans valence angles are equal. Six different paths fo r the SQP reversible arrow TBP deformation of the Cu-II coordination h ave been established from three criteria: (a) the location of the brid ging ligands (axial and equatorial or equatorial and equatorial in TBP ); (b) the nature of the deformation of the SQP base plane (pyramidal or tetrahedral); (c) whether a bridging or nonbridging bond is elongat ed in a SQP. The causes of the angular distortions from C-2 symmetry a long the apical bond of a SQP, typical for the TBP reversible arrow SQ P Berry path, are analyzed. A progressive reduction of the tetragonal elongation of the Cu-D apical (SQP) bond length along the SQP reversib le arrow TBP transformation path and trigonal equalization of the thre e equatorial Cu-D (TBP) bonds are observed. The dependence of the aver age Cu-Cu' distance and Cu-X-Cu' angles on the deformation path are al so established.