首页> 外文期刊>Journal of Molecular Structure. Theochem: Applications of Theoretical Chemistry to Organic, Inorganic and Biological Problems >Solvent and counterion effects on Na+/Cs4' complexation selectivity by conformationally locked calix[4]-bis-crown ligands: Molecular Dynamics and Free Energy Perturbation studies in water and methanol, acetonitrile and chloroform solutions
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Solvent and counterion effects on Na+/Cs4' complexation selectivity by conformationally locked calix[4]-bis-crown ligands: Molecular Dynamics and Free Energy Perturbation studies in water and methanol, acetonitrile and chloroform solutions

机译:构象锁定的杯[4]-双皇冠配体对溶剂和抗衡离子对Na + / Cs4'络合选择性的影响:在水和甲醇,乙腈和氯仿溶液中的分子动力学和自由能摄动研究

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摘要

Calix[4]arene-bis-crown ligands (L), conformationaly locked in the 1,3-alternate conformation display remarkable ionophoric properties with respect to alkali cations (M~+). Of particular interest is the large Cs~+/Na~+ binding selectivity displayed by calix[4]-bis-crown-6, in speparating radioactive Cs~+ from nuclear waste. Based on Molecular Dynamics and Free Energy Perturbation simulations, we report a consistent comparison of Na~+, K~+, Rb~+ and Cs~+ complexes in four different solvents (water, methanol, acetonitrile and chloroform )and in the gas phase, in order to elucidate solvent effects on structures and stabilities on these complexes. We predict that Cs+ is complexed by calix[4]-bis-crown-6 better than Na~+ in water and methanol and acetonitrile solutions, whereas in chloroform and in the gas phase, Na~+ is preferred. Also, calix[4]-bis-crown-5 hosts are predicted to bind selectively Na~+ in chloroform, but K~+ or Rb~+ in methanol. Additionally, our studies on calix[4]-bis-crown-6 involve; (i) the effect of a picrate counterion on structures and selectivities; (ii) the role played by the hydrophobic p-t-butyl substituents; (iii) modelling of ditopic bis-cation 2M~+ complexes.
机译:锁定在1,3-交替构象中的杯[4]芳烃-双冠配体(L)相对于碱性阳离子(M +)显示出显着的离子性质。特别令人感兴趣的是杯盖里[4] -bis-crown-6在从核废料中分离放射性Cs +时显示出大的Cs〜+ / Na〜+结合选择性。基于分子动力学和自由能扰动模拟,我们报告了在四种不同溶剂(水,甲醇,乙腈和氯仿)和气相中Na〜+,K〜+,Rb〜+和Cs〜+配合物的一致比较,以阐明溶剂对这些配合物的结构和稳定性的影响。我们预测,在水,甲醇和乙腈溶液中,杯[4]-双皇冠-6与Na〜+相比,Cs +的络合效果更好,而在氯仿和气相中,Na〜+则更受欢迎。另外,预计杯[4]-双冠-5宿主在氯仿中选择性结合Na〜+,但在甲醇中选择性结合K〜+或Rb〜+。另外,我们对杯[4] -bis-crown-6的研究涉及到; (i)苦味精抗衡离子对结构和选择性的影响; (ii)疏水性对叔丁基取代基所起的作用; (iii)对位双阳离子2M〜+复合物的建模。

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