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首页> 外文期刊>Journal of Molecular Liquids >Molecular dynamics simulation study of the effect of single-walled carbon nanotube on the enantioseparation ability of a chiral ionic liquid
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Molecular dynamics simulation study of the effect of single-walled carbon nanotube on the enantioseparation ability of a chiral ionic liquid

机译:单壁碳纳米管对手性离子液体映对能力影响的分子动力学模拟研究

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摘要

A non-halogenated type of chiral ionic liquids (CIL's) called 1-butyl-3-methylimidazolium(T-4)-bis[(alpha S)-alpha-(hydroxy-O) benzeneacetato-kappa O] borate, [BMIm+] [BSMB-], has been used for enantioseparation of propranolol enantiomers. Experimental studies indicate that carbon nanotubes (CNT's) increase the Enantioselectivity of chiral ionic liquids through the enhancement of the interaction surface of chiral selectors with the compounds enantiomers. With the aim of investigating the mechanism under this observation, we used Molecular Dynamics (MD) Simulations to investigate the molecular level picture of the behavior of CIL and propranolol enantiomers on the Single-Walled Carbon Nanotube (SWCNT) surface. The density profiles, micro structure, radial distribution function, dimer existence autocorrelation function (DAF) and dynamic properties of propranolol enantiomers were studied in the CIL/CNT solution. The results are indicative of stronger interactions between R-propranolol enantiomers with CIL and CNT surface. Furthermore stronger interactions were seen between the R-propranolol molecules with one another. This leads to the difference in the replacement of propranolol enantiomers on the CNT surface in such a way that R-propranolol molecules propagate more along the CNT to have the maximum interactions with CIL molecules. The diffusion coefficient difference between S-propranolol and R-propranolol molecules shows a higher value in comparison to the system that CNT is absent. Consequently, the interactions, propagation and mobility of propranolol enantiomers are strongly influenced by CNT presence. (C) 2020 Elsevier B.V. All rights reserved.
机译:非卤化类型的手性离子液体(CIL)称为1-丁基-3-甲基咪唑鎓(T-4)--bis [(αS) - α-(羟基-O)苯并乙酰-kappa O]硼酸酯,[Bmim +] [BSMB-]已被用于普萘洛醇对映体的映映异构体。实验研究表明,碳纳米管(CNT)通过增强细胞选择器与化合物对映体的增强来增加手性离子液体的对映射性。目的在于研究该观察下的机制,我们使用了分子动力学(MD)模拟来研究单壁碳纳米管(SWCNT)表面上CIL和普萘洛醇对映异构体的分子水平图像。在CIL / CNT溶液中,研究了密度谱,微结构,径向分布函数,二聚体存在自相关函数(DAF)和普萘洛尔对映体的动态性质。结果表明具有CIL和CNT表面的R-普萘洛尔对映异构体之间的相互作用。此外,在R-普萘洛尔分子中彼此相互作用较强的相互作用。这导致替代CNT表面上的丙醇对映体的差异,使得R-普萘洛尔分子沿CNT繁殖的方式具有与CIL分子的最大相互作用。 S-普萘洛尔和R-丙醇醇分子之间的扩散系数差异显示出与CNT不存在的系统相比较高的值。因此,普萘洛尔对映异构体的相互作用,繁殖和迁移性受CNT存在的强烈影响。 (c)2020 Elsevier B.v.保留所有权利。

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