首页> 外文期刊>Physical chemistry chemical physics: PCCP >The effect of a solvent modifier in the cesium extraction by a calix[4] arene: a molecular dynamics study of the oil phase and the oil-water interface
【24h】

The effect of a solvent modifier in the cesium extraction by a calix[4] arene: a molecular dynamics study of the oil phase and the oil-water interface

机译:杯[4]芳烃萃取铯中溶剂改性剂的作用:油相和油水界面的分子动力学研究

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

We report a molecular dynamics (MD) study of the effect of a fluorinated lipophilic alcohol (referred to as "cs3'' by Delmau et al, Solvent Extr. Ion Exch., 2005, 23, 23) used as a phase modifier in the solvent extraction of Cs+ NO3- by a calix[4] arene. It is shown that adding cs3 to a chloroform phase improves the solvation of all partners of the extraction system, i.e. the free calixarene ligand L, its LCs+ complex and its counterion. This effect is most pronounced for the NO3- anion that is H-bonded to the -OH and terminal -CF2H protons of cs3. On the average, the dissociated nitrate interacts with 2 to 4 cs3 molecules, whereas the associated nitrate (LCs +NO3- complex) interacts with one cs3 dimer. The remaining modifier molecules are mainly dissolved in the solution as dimers or trimers and, to a lesser extent, as monomers and tetramers. Insights into the question of ion pairing in the organic phase are obtained via free energy perturbation (FEP) calculations, showing that the LCs +NO3- paired complex is more stable than its analogue with the dissociated anion. Furthermore, the nitrate dissociation energy is ca. twice as small in the cs3-modified solution than in a pure chloroform phase. We also simulated chloroform/cs3/water ternary systems, showing that the modifiers are surface active and stabilize the formation of water nanodroplets, while other modifier molecules drag some water to the organic phase. Calixarene complexes also adsorb at the aqueous interface in the presence of modifiers, confirming the importance of interfacial phenomena in the assisted cation extraction process. The microscopic insights obtained by the simulations are consistent with experimental results and allow us to better understand why the extraction is enhanced after addition of modifiers to the organic phase.
机译:我们报告了一种分子动力学(MD)研究,该研究用作氟代亲脂醇(在Delmau等人称为“ cs3”,Solvent Extr。Ion Exch。,2005,23,23)中用作相改性剂。用杯[4]芳烃对Cs + NO3-进行溶剂萃取,结果表明,在氯仿相中添加cs3可以改善萃取系统所有伙伴的溶剂化,即游离杯芳烃配体L,其LCs +络合物及其抗衡离子。 H3-键合到cs3的-OH和末端-CF2H质子上的NO3-阴离子的作用最为明显。平均而言,离解的硝酸盐与2至4个cs3分子相互作用,而缔合的硝酸盐(LCs + NO3-络合物)与一个cs3二聚体相互作用,剩余的修饰剂分子主要以二聚体或三聚体的形式溶解在溶液中,而以较小程度地以单体和四聚体的形式溶解在溶液中。微扰(FEP)计算,表明LC s + NO3-配对的络合物比带有离解阴离子的类似物更稳定。此外,硝酸盐离解能为约。在CS3修饰溶液中,其体积是纯氯仿相中的两倍。我们还模拟了氯仿/ cs3 /水三元系统,表明改性剂具有表面活性并稳定了水纳米滴的形成,而其他改性剂分子将一些水拖到有机相中。在改性剂的存在下,杯芳烃配合物也吸附在水界面上,证实了在辅助阳离子萃取过程中界面现象的重要性。通过模拟获得的微观见解与实验结果一致,使我们能够更好地理解为什么在有机相中添加了改性剂后,萃取率得以提高。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号