Chemistry Department, Faculty of Science (Demiatta), Mansoura University, Demiatta, Egypt.
Spectrochim Acta A Mol Biomol Spectrosc. 2010 Jan;75(1):394-405. doi: 10.1016/j.saa.2009.10.047. Epub 2009 Nov 5.
Novel five binuclear polymeric dioxouranium(VI) of azosulphadrugs [(azodrug substances) azobenzene sulphonamides] were prepared for the first time. The infrared spectra of the samples were recorded and their fundamental vibration wave number was obtained. The resulting polymeric uranyl complexes were characterized on the basis of their elemental analyses, conductance and spectral (IR, NMR, and electronic spectra) data. The ligation modes of the azosulphadrugs ligands towards uranyl(II) ions were critically assigned and addressed properly on the basis of their IR and their uranyl(II) complexes. The theoretical aspects are described in terms of the well-known theory of 5d-4f transitions. The coordination geometries and electronic structures are determined from a framework for the modeling of novel polymer complexes. The values of nu(3) of the prepared complexes containing UO(2)(2+) were successfully used to calculate the force constant, F(UO) (1n 10(-8)N/A) and the bond length R(UO) of the U-O bond. Wilson's, matrix method, Badger's formula, and Jones and El-Sonbati equations were used to calculate the U-O bond distances from the values of the stretching and interaction force constants. The most probable correlations between U-O force constant to U-O bond distance were satisfactorily discussed in terms of "Badger's rule", "Jones" and "El-Sonbati equations".
首次制备了新型五核双核聚合二氧铀(VI)的偶氮磺酰胺药物[(偶氮药物物质)偶氮苯磺酰胺]。记录了样品的红外光谱,并获得了其基本振动波数。根据元素分析、电导率和光谱(IR、NMR 和电子光谱)数据对所得聚合铀配合物进行了表征。根据其红外光谱和铀(II)配合物,对偶氮磺酰胺配体与铀(II)离子的键合模式进行了严格的归属和正确处理。从新型聚合物配合物的建模框架出发,描述了理论方面,涉及到众所周知的 5d-4f 跃迁理论。配位几何形状和电子结构是从新型聚合物配合物的建模框架确定的。包含 UO(2)(2+)的制备配合物的 ν(3)值被成功用于计算力常数 F(UO)(1n 10(-8)N/A)和 U-O 键的键长 R(UO)。使用 Wilson 矩阵方法、Badger 公式、Jones 和 El-Sonbati 方程从伸缩和相互作用力常数的值计算 U-O 键距离。根据“Badger 规则”、“Jones”和“El-Sonbati 方程”,令人满意地讨论了 U-O 力常数与 U-O 键距离之间最可能的相关性。