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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Remarkable structural effects on the complexation of actinides with H-phosphonates: a combined experimental and quantum chemical study
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Remarkable structural effects on the complexation of actinides with H-phosphonates: a combined experimental and quantum chemical study

机译:对H-膦酸盐的散曲粘接物的络合显着的结构作用:一种实验和量子化学研究

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The structural effects of the carbon chain on the extraction of actinides by organo-phosphorus extractants have been examined experimentally and by computation. Branched butyl H-phosphonates and their linear chain isomer, n-butyl H-phosphonate (DBHP), were synthesised and characterised using IR, NMR and GC-MS techniques. Their physical properties viz. viscosity, density and aqueous solubility have been examined. DBHP, Di-iso-butyl H phosphonate (DiBHP) and Di-sec-butyl H phosphonate (DsBHP) were employed for the extraction of uranium and americium ions from nitric acid. U-233 (-tracer) and Am-241 (-tracer) were employed as representative isotopes for the extraction of U and Am, respectively, and their distribution ratios (D) were obtained as a function of nitric acid concentration (0.01-8 M). Branching of the alkyl chain at the secondary carbon atom showed unexpected neutral extractant behaviour for DsBHP which is generally classified as an acidic extractant. The acid-dependent dual extraction mechanisms for the H-phosphonates have been examined both experimentally and through quantum chemical calculations. This dramatic effect can be partly attributed to the hindrance in the formation of the enol tautomer through the strengthening of the P?OH hydrogen bonding in the DsBHP extractant. Density functional theory (DFT) based calculations were carried out to understand the complexation behaviour of actinides with the two extractants. Possible structures and binding affinities of actinides with H-phosphonates have been deduced from electronic structure calculations. Finally, the trends in distribution ratios were additionally explored and correlated with experimental observations for both metal ions.
机译:通过实验和计算研究了有机磷萃取剂辐射碳化剂对散曲线提取的结构效应。合成分支丁基H-膦酸酯及其直链H-膦酸二叔丁酯(DBHP),并使用IR,NMR和GC-MS技术进行了特征。他们的物理属性viz。已经检查了粘度,密度和含水溶解度。使用DBHP,二 - 丁基H膦酸酯(DiBHP)和二仲丁基H膦酸盐(DSBHP)用于从硝酸提取铀和琥珀离子。 U-233(-tracer)和AM-241(-Tracer)作为提取U和AM的代表性同位素,其分布比(D)作为硝酸浓度的函数获得(0.01-8 m)。二次碳原子处的烷基链的支化显示出DSBHP的意外中性萃取剂行为,其通常被分类为酸性萃取剂。已经通过量子化学计算研究了H-膦酸盐的酸依赖性双重提取机制。这种戏剧性效果可以部分地归因于通过强化DSBHP萃取剂中的P 1 OH氢键合形成烯醇互变异构体的障碍。进行密度函数理论(DFT)的计算,以了解散发物与两种萃取剂的络合行为。从电子结构计算中推导出具有H-膦酸酯的散曲苷的可能结构和结合亲和力。最后,另外探索分发比率的趋势与金属离子的实验观察结果相关。

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