Structure and spectroscopic study of a novel complex: Tetrakis(benzimidazole)(perchlorato)copper(II)(perchlorate) hemihydrate
✍ Scribed by Danuta Dobrzyńska; Jan Janczak; Agnieszka Wojciechowska; Katarzyna Helios
- Publisher
- Elsevier Science
- Year
- 2010
- Tongue
- English
- Weight
- 939 KB
- Volume
- 973
- Category
- Article
- ISSN
- 0022-2860
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✦ Synopsis
A novel complex tetrakis(benzimidazole)(perchlorato)copper(II)(perchlorate) hemihydrate has been prepared and characterized by single crystal X-ray analysis, FT-IR, Raman and UV-VIS spectroscopy.
[Cu(Hbim) 4 (ClO 4 )](ClO 4 )Á½H 2 O crystallizes in the centrosymmetric space group of triclinic system with two molecules in the asymmetric unit cell. The cupric ion of both independent molecules is coordinated by four nitrogen atoms lying in the basal plane and by an oxygen atom located in the axial position. An extensive network of NAHÁÁÁO hydrogen bonds links the oppositely charged [Cu(Hbim) 4 (ClO 4 )] + and ClO À 4 units into the 2D supramolecular arrangement parallel to (0 1 1) crystallographic plane. The CuN 4 O chromophore adopts a slightly distorted square-pyramidal geometry (SQP), the degree of trigonality (s) equals 0.081 and 0.013, for Cu1 and Cu2, respectively. The solid state diffuse-reflectance electronic spectrum shows the principal high-energy band at ca. 19,200 cm À1 , which is assigned to the d xy , d xz % d yz ? d x2-y2 transitions, whereas the shoulder at ca. 16,030 cm À1 can be assigned to the d z2 ? d x2-y2 transition. The FT-IR and Raman spectra have been measured and assigned in the range 4000-50 cm À1 . The complicated character of the absorption bands arising from the ClAO and NAH stretching vibrations confirms the presence of intermolecular hydrogen bonds in crystal. In the far infrared spectrum, the CuAN stretching vibration is assigned at 310 cm À1 , while the CuAO stretching vibration contributes mainly to the band at 160 cm À1 , which reflects a weak CuAO interaction.
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1,4,7,1O-Tetraazacyclododecane having P-ethylphosphoryl pendant groups on the nitrogen atoms can form a complementary ligand for the Cu cation. It gives rise to a square pyramidal complex of [CuLI2+ compositions, the ligand entering this complex with a slight energy strain. 0 1996 John Wiley & Sons,