某些氯锡酸盐(IV)无机-有机杂化配合物的合成、红外及Mössbauer表征:Sn-Ph键的断裂

Dame Seye, M. Diop, Assane Touré, Tidiane Diop, C. Diop, M. Sidibe, A. Sarr, L. Diop,
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引用次数: 0

摘要

从溶液中的反应中分离出五种新化合物。所有化合物都用红外光谱和穆斯堡尔光谱进行了表征。光谱研究表明存在不同的特征带,特别是来自三苯基氧化膦的υ (PO)振动,由于来自尿素的NH2基团和显示苯基存在的强烈重态而具有广泛的吸收。提出的结构,在固体状态下,是离散的,虽然氢键相互作用可能发生。本研究中的事件是在某些反应过程中,在氧化三苯基膦或尿素的存在下发生的去酰化,裂解的Sn-Ph键。在三苯基氧化膦存在的情况下,脱酰化随后形成Sn-Cl新键,而在尿素存在的情况下,Sn-Ph键发生裂解,尿素脱氨产生Sn-N和Sn-Cl新键,其存在通过穆斯堡尔参数确定。锡(II)氧化为锡(IV)以及氧离子h30o +的配位行为也被注意到。氧化三苯基膦与SnCl2的反应。2H2O和硝酸,我们得到了锡被氧化的化合物。尿素和SnPh3Cl之间的反应是一种物种交换的场所,可以通过尿素的脱氨和SnPh3Cl的去苯基化来解释,旨在了解这种转化过程的研究仍然未知,导致氨基氯丁(IV)化合物的分离和分离它们的单晶正在我们的实验室进行(LA.CHI.MI.A)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Synthesis, Infrared and Mössbauer Characterization of Some Chloridestannate (IV) Inorganic-organic Hybrid Complexes: Sn-Ph Bonds Cleavage
Five new compounds are isolated from reactions carried out in solution. All the compounds are characterized by, Infrared and Mossbauer spectroscopies. Spectroscopic studies have shown the presence of different carracterristic bands, notably υ (PO) vibrations coming from triphenylphosphine oxide, with wide absorption due to the NH2 groups coming from urea and the intense doublet which show the presence of phenyl groups. The proposed structures, in the solid state, are discrete though hydrogen bonding interactions may occur. Event in this study is the dearylation evidenced, cleaved Sn-Ph bonds occurring in the presence of triphenylphosphine oxide or urea, during some reaction processes. In the presence of triphenylphosphine oxide, the dearylation is followed by the formation of Sn-Cl new bonds while in the presence of urea, the Sn-Ph bonds cleavage undergo with a deamination of the urea giving rise to the formation of Sn-N and Sn-Cl new bonds whose presence are ascertained by the Mossbauer parameters. The oxidation of tin (II) to tin (IV) as well as the coordination behavior of the oxonium, H3O+ cation is also noted in this work. In the reaction of triphenylphosphine oxide with SnCl2. 2H2O and nitric acid, we have obtained compounds in which tin has oxidized. The reactions between urea and SnPh3Cl are the site of a species exchange which can be explained by a deamination of urea and a dephenylation of SnPh3Cl Studies aimed at understanding the processes of this transformation still unknown leading to the isolation of aminochlorotin (IV) compounds and isolating their single crystals are being carried in our laboratory (LA.CHI.MI.A).
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