Golchoubian Hamid, Moayyedi Golasa, Reisi Neda
Department of Chemistry, University of Mazandaran, Babol-sar 47416-95447, Iran; Department of Chemistry, Mohammad Reza Hariri Science Foundation, Babol 47146-38474, Iran.
Department of Chemistry, University of Mazandaran, Babol-sar 47416-95447, Iran.
Spectrochim Acta A Mol Biomol Spectrosc. 2015 Mar 5;138:913-24. doi: 10.1016/j.saa.2014.10.027. Epub 2014 Nov 1.
This study investigates chromotropism of newly synthesized 3,3'-(ethane-1,2-diylbis(benzylazanediyl))dipropanamide copper(II) perchlorate complex. The compound was structurally characterized by physico-chemical and spectroscopic methods. X-ray crystallography of the complex showed that the copper atom achieved a distorted square pyramidal environment through coordination of two amine N atoms and two O atoms of the amide moieties. The pH effect on the visible absorption spectrum of the complex was studied which functions as pH-induced "off-on-off" switches through protonation and deprotonation of amide moieties along with the CuO to CuN bond rearrangement at room temperature. The complex was also observed to show solvatochromism and ionochromism. The distinct solution color changes mainly associated with hemilability of the amide groups. The solvatochromism of the complex was investigated with different solvent parameter models using stepwise multiple linear regression method. The results suggested that the basicity power of the solvent has a dominant contribution to the shift of the d-d absorption band of the complex. Density functional theory, DFT calculations were performed in order to study the electronic structure of the complex, the relative stabilities of the CuN/CuO isomers, and to understand the nature of the halochromism processes taking place. DFT computational results buttressed the experimental observations indicating that in the natural pH (5.8) the CuO isomer is more stable than its linkage isomer and conversely in alkaline aqueous solution.
本研究考察了新合成的3,3'-(乙烷-1,2-二基双(苄基亚氨基))二丙酰胺高氯酸铜(II)配合物的变色现象。通过物理化学和光谱方法对该化合物进行了结构表征。该配合物的X射线晶体学表明,铜原子通过两个胺N原子和酰胺部分的两个O原子配位,形成了扭曲的四方锥环境。研究了pH对该配合物可见吸收光谱的影响,在室温下,通过酰胺部分的质子化和去质子化以及CuO到CuN键的重排,该配合物起到pH诱导的“开-关-开”开关的作用。还观察到该配合物表现出溶剂致变色和离子致变色。明显的溶液颜色变化主要与酰胺基团的半不稳定有关。使用逐步多元线性回归方法,用不同的溶剂参数模型研究了该配合物的溶剂致变色现象。结果表明,溶剂的碱度对该配合物d-d吸收带的位移有主要贡献。进行了密度泛函理论(DFT)计算,以研究该配合物的电子结构、CuN/CuO异构体的相对稳定性,并了解发生的卤致变色过程的本质。DFT计算结果支持了实验观察结果,表明在自然pH(5.8)下,CuO异构体比其键合异构体更稳定,反之在碱性水溶液中则相反。