Background
Type: Article

A new tridentate Schiff base Cu(II) complex: Synthesis, experimental and theoretical studies on its crystal structure, FT-IR and UV-Visible spectra

Journal: Spectrochimica Acta - Part A: Molecular and Biomolecular Spectroscopy (13861425)Year: June 2013Volume: 110Issue: Pages: 124 - 129
Saheb V. Sheikhshoaie I. Setoodeh N.Amiri Rudbari H.a Bruno G.
DOI:10.1016/j.saa.2013.03.008Language: English

Abstract

A new Cu(II) complex [Cu(L)(NCS)] has been synthesized, using 1-(N-salicylideneimino)-2-(N,N-methyl)-aminoethane as tridentate ONN donor Schiff base ligand (HL). The dark green crystals of the compound are used for single-crystal X-ray analysis and measuring Fourier Transform Infrared (FT-IR) and UV-Visible spectra. Electronic structure calculations at the B3LYP and MP2 levels of theory are performed to optimize the molecular geometry and to calculate the UV-Visible and FT-IR spectra of the compound. Vibrational assignments and analysis of the fundamental modes of the compound are performed. Time-dependent density functional theory (TD-DFT) method is used to calculate the electronic transitions of the complex. A scaling factor of 1.015 is obtained for vibrational frequencies computed at the B3LYP level using basis sets 6-311G(d,p). It is found that solvent has a profound effect on the electronic absorption spectrum. The UV-Visible spectrum of the complex recorded in DMSO and DMF solution can be correctly predicted by a model in which DMSO and DMF molecules are coordinated to the central Cu atom via their oxygen atoms. © 2013 Elsevier B.V. All rights reserved.


Author Keywords

Cu(II) complexFT-IRQuantum chemical calculationsTridentate Schiff baseUV-Visible

Other Keywords

Absorption spectroscopyCoordination reactionsDensity functional theoryElectronic structureFunctional groupsQuantum chemistrySingle crystalsCu complexesFT-IRQuantum chemical calculationsTridentate Schiff-baseUV-visibleCopper compounds