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首页> 外文期刊>New Journal of Chemistry >Liquid-liquid extraction of alkali cations by 18-crown-6: complexation and interface crossing studied by MD and PMF simulations
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Liquid-liquid extraction of alkali cations by 18-crown-6: complexation and interface crossing studied by MD and PMF simulations

机译:18-crown-6液-液萃取碱性阳离子:MD和PMF模拟研究络合和界面交叉

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摘要

In order to get microscopic views of what happens at the water/chloroform interface upon selective extraction of alkali cations (M+ = Na+, K+, Cs+) by the 18-crown-6 macrocycle "18C6", we studied by MD and potential of mean force "PMF" simulations their complexation in the source phase (water) and at the interface, and the interface crossing by the different species. The binding free energies in water calculated without polarization (NO-POL) or with polarization (POL) are in good accord with the experiment. At the interface, the K+ and Cs+ complexes are found to be stronger than those in water, while the Na+ complex is weaker. The free energy profiles for interface crossing by 18C6 and the 18C6/M+ Pic(-) complexes (Pic(-) is the trinitrophenolate anion), calculated using different models, reveal a deep minimum at the interface, indicating that they are surface active, in spite of their centrosymmetrical structure. These results hint for a complexation process occurring "right at the nano-interface", a feature further supported by a POL simulation where 18C6 rapidly (<5 ns) captures K+ at the interface along the dynamics. Regarding the extraction selectivity, we show that the K+ complex is the most stable one at the interface, and that it is most easily transferred to the receiving phase. The complexation and extraction selectivity for K+ obtained from the PMF route are also evidenced by "alchemical mutations". These simulations point the importance of the aqueous "nano-interface" for complexation, recognition and chemical reactivity in confined aqueous media.
机译:为了获得通过18冠6大环“ 18C6”选择性萃取碱性阳离子(M + = Na +,K +,Cs +)后在水/氯仿界面发生的微观观察,我们通过MD和均值潜力进行了研究。力“ PMF”模拟了它们在源相(水)中和界面处的复杂度,以及界面被不同物种所穿过。在没有极化(NO-POL)或有极化(POL)的情况下计算的水中的结合自由能与实验非常吻合。在界面处,发现K +和Cs +络合物比水中的强,而Na +络合物更弱。使用不同模型计算得出的18C6和18C6 / M + Pic(-)配合物(Pic(-)是三硝基酚酸根阴离子)穿过界面的自由能曲线显示界面处存在极小的最小值,表明它们具有表面活性,尽管它们具有中心对称的结构。这些结果暗示了复合过程“恰好在纳米界面上”发生,这是POL模拟进一步支持的功能,其中18C6快速(<5 ns)沿动力学在界面处捕获K +。关于萃取选择性,我们表明K +络合物在界面上是最稳定的,并且最容易转移到接收相。从PMF途径获得的K +的络合和萃取选择性也由“炼金术突变”证明。这些模拟指出了水性“纳米界面”对于受限水性介质中的络合,识别和化学反应性的重要性。

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