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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Molecular dynamics study of dicarbollide anions in nitrobenzene solution and at its aqueous interface. Synergistic effect in the Eu(III) assisted extraction
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Molecular dynamics study of dicarbollide anions in nitrobenzene solution and at its aqueous interface. Synergistic effect in the Eu(III) assisted extraction

机译:硝基苯溶液及其水界面中双糖类阴离子的分子动力学研究。 Eu(III)辅助萃取中的协同效应

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We report a molecular dynamics study of chlorinated cobalt bis(dicarbollide) anions [(B9C2H8Cl3)(2)Co](-) "CCD-'' in nitrobenzene and at the nitrobenzene - water interface, with the main aim to understand the solution state of these hydrophobic species and why they act as strong synergists in assisted liquid - liquid extraction of metallic cations. Neat nitrobenzene is found to well solubilize CCD-, Cs+ salts in the form of diluted pairs or oligomers, without displaying aggregation. In biphasic nitrobenzene - water systems, CCD- anions mainly partition to the organic phase, thus attracting Cs+ or even more hydrophilic counterions like Eu3+ into that phase. The remaining CCD- anions adsorb at the interface, but are less surface active than at the chloroform interface. Finally, we compare the interfacial behavior of the Eu(BTP)(3)(3+) complex in the absence and in the presence of CCD- anions and extractant molecules. It is found that in the absence of CCDs, the complex is trapped at the interface, while when the CCDs are concentrated enough, the complex is extracted to the nitrobenzene phase. These results are compared to those obtained with chloroform or octanol as organic phase and discussed in the context of synergistic effect of CCDs in liquid - liquid extraction, pointing to the importance of dual solvation properties of nitrobenzene or octanol to solubilize the CCD- salts as well as the extracted complex.
机译:我们报告了氯化钴双(二咔唑)阴离子[(B9C2H8Cl3)(2)Co](-)在硝基苯和硝基苯-水界面中的“ CCD-”分子动力学研究,其主要目的是了解溶液的状态这些疏水性物种中的一种,以及为什么它们在协助金属阳离子的液-液萃取中起强协同作用的作用,发现纯硝基苯能很好地溶解稀释对或低聚物形式的CCD-,Cs +盐,而不会出现聚集现象。在水系统中,CCD-阴离子主要分配给有机相,从而将Cs +或更多亲水性抗衡离子(例如Eu3 +)吸引到该相中,其余CCD-阴离子吸附在界面上,但表面活性低于氯仿界面。我们比较了在不存在和存在CCD-阴离子和萃取剂分子的情况下Eu(BTP)(3)(3+)配合物的界面行为,发现在不存在CCD的情况下,该配合物被捕集在界面,当CCD足够浓缩时,络合物被萃取至硝基苯相。将这些结果与以氯仿或辛醇为有机相获得的结果进行了比较,并在液-液萃取中CCD协同作用的背景下进行了讨论,指出了硝基苯或辛醇的双重溶剂化性质也对溶解CCD-盐具有重要意义作为提取的复合物。

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