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首页> 外文期刊>Journal of Molecular Structure >Polymer complexes. LVII. Supramolecular assemblies of novel polymer complexes of dioxouranium(VI) with some substituted allyl azo dye compounds
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Polymer complexes. LVII. Supramolecular assemblies of novel polymer complexes of dioxouranium(VI) with some substituted allyl azo dye compounds

机译:聚合物配合物。 LVII。二氧呋喃鎓(VI)与一些取代的烯丙基偶氮染料化合物的新型聚合物配合物的超分子组装

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摘要

A novel method to synthesize some dioxouranium(VI) polymer complexes of the general formula [UO_2(Ln)_2(OAc)_2] (where HLn = azo allyl rhodanine). The structure of the novel mononuclear dioxoutranium(VI) polymer complexes was characterized using elemental analysis, spectral (electronic, infrared, 1H & 13C NMR) studies, magnetic susceptibility measurements and thermal analysis. The molar conductivities show that all the polymer complexes are non-electrolytes. The IR showed that the ligand HLn act as bidentate neutral through carbonyl group and imine group nitrogen atom forming thereby a six-membered chelating ring and concomitant formation of an intramolecular hydrogen bond. The υ3 frequency of UO2+2 has been shown to be an excellent molecular probe for studying the coordinating power of the ligands. The values of υ3 of the prepared complexes containing UO2+2 were successfully used to calculate the force constant, F_(UO) (10 -8 N/?) and the bond length R_(UO) (?) of the UO bond. A strategy based upon both theoretical and experimental investigations has been adopted. The theoretical aspects are described in terms of the well-known theory of 5d-4f transitions. Wilson's, matrix method, Badger's formula, and Jones and El-Sonbati equations were used to calculate the UO bond distances from the values of the stretching and interaction force constants. The most probable correlation between UO force constant to UO bond distance were satisfactorily discussed in term of Badger's rule and the equations suggested by Jones and El-Sonbati. The effect of Hammet constant is also discussed.
机译:一种合成某些通式为[UO_2(Ln)_2(OAc)_2]的二氧铀鎓(VI)聚合物配合物的新方法(其中HLn =偶氮烯丙基罗丹宁)。使用元素分析,光谱(电子,红外,1H和13C NMR)研究,磁化率测量和热分析来表征新型单核二氧杂铀(VI)聚合物配合物的结构。摩尔电导率表明所有聚合物配合物均为非电解质。 IR显示,配体HLn通过羰基和亚胺基氮原子形成二齿中性分子,从而形成六元螯合环并伴随形成分子内氢键。已证明UO2 + 2的υ3频率是研究配体配位能力的出色分子探针。所制备的含UO2 + 2的配合物的υ3值已成功用于计算力常数F_(UO)(10 -8 N /?)和UO键的键长R_(UO)(?)。已经采用了基于理论和实验研究的策略。理论方面是根据众所周知的5d-4f跃迁理论进行描述的。使用Wilson方法,矩阵方法,Badger公式以及Jones和El-Sonbati方程,从拉伸和相互作用力常数的值计算UO键距。根据Badger法则以及Jones和El-Sonbati提出的方程式,令人满意地讨论了UO力常数与UO键距之间最可能的相关性。还讨论了Hammet常数的影响。

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