Chemistry Department, Faculty of Science (Demiatta), Mansoura University, Demiatta, Egypt.
Spectrochim Acta A Mol Biomol Spectrosc. 2011 Dec;83(1):490-8. doi: 10.1016/j.saa.2011.08.070. Epub 2011 Sep 8.
The synthetic methods of novel Cu(II) and adduct complexes, with selective azodyes containing nitrogen and oxygen donor ligands have been developed, characterized and presented. The prepared complexes fall into the stoichiometric formulae of Cu(L(n))(2) and Cu(L(n))(2)(Py)(2), where two types of complexes were expected and described. In type [(A) (1:2)] the chelate rings are six-membered/four coordinate, whereas in type [(B) (1:2:2)] they are six-membered/six coordinate. The important bands in the IR spectra and main (1)H NMR signals are tentatively assigned and discussed in relation to the predicted assembly of the molecular structure. The IR data of the azodye ligands suggested the existing of a bidentate binding involving azodye nitrogen and C-O oxygen atom of enolic group. They also showed the presence of Py coordinating with the metal ion. The coordination geometries and electronic structures are determined from the framework of the proposed modeling of the formed novel complexes. The complexes (1-5) exist in trans-isomeric [N,O] solid form, while adduct complexes (6-10) exist in trans isomeric (Py) form. The square planar/octahedral coordination geometry of Cu(II)/adduct is made up of an N-atom of azodye, the deprotonated enolic O-atom and two Py. The azo group was involved in chelation for all the prepared complexes. ESR spectra show the simultaneous presence of a planar trans and a nearly planar cis isomers in the 1:2 ratio for all N,O complexes [Cu(L(n))(2)]. The ligands in the dimmer are stacked over one another. In the solid state of azo-rhodanine, the dimmers have inter- and intramolecular hydrogen bonds. Interactions between the ligands and Cu(II) are also discussed.
新型 Cu(II)和加合物配合物的合成方法,采用含有氮和氧供体配体的选择性偶氮染料,已经被开发、表征并呈现出来。所制备的配合物属于化学计量式 Cu(L(n))(2) 和 Cu(L(n))(2)(Py)(2),预期并描述了两种类型的配合物。在类型 [(A) (1:2)] 中,螯合环是六元/四配位的,而在类型 [(B) (1:2:2)] 中,它们是六元/六配位的。IR 光谱中的重要谱带和主要 (1)H NMR 信号被推测并讨论与预测的分子结构组装有关。偶氮染料配体的 IR 数据表明存在涉及偶氮氮和烯醇基团的 C-O 氧原子的双齿配位。它们还表明 Py 与金属离子配位。配合物的配位几何形状和电子结构是从形成的新型配合物的建模框架中确定的。配合物 (1-5) 以反式-[N,O] 固态形式存在,而加合物配合物 (6-10) 以反式 (Py) 形式存在。Cu(II)/加合物的正方形平面/八面体配位几何形状由偶氮染料的 N 原子、去质子化的烯醇 O 原子和两个 Py 组成。所有制备的配合物中,偶氮基团都参与了螯合。ESR 光谱表明,所有的 [Cu(L(n))(2)] N,O 配合物都同时存在平面反式和顺式异构体的混合物,比例为 1:2。配体在二聚体中相互堆叠。在偶氮-硫代缩氨酸的固态中,二聚体具有分子间和分子内氢键。还讨论了配体与 Cu(II)之间的相互作用。