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Choline Hydrogen Dicarboxylate Ionic Liquids by X-ray Scattering Vibrational Spectroscopy and Molecular Dynamics: H-Fumarate and H-Maleate and Their Conformations

机译:Choline氢二羧酸离子液通过X射线散射振动光谱和分子动力学:H-富马酸盐和H-马来酸及其构象

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摘要

We explore the structure of two ionic liquids based on the choline cation and the monoanion of the maleic acid. We consider two isomers of the anion (H-maleate, the cis-isomer and H-fumarate, the trans-isomer) having different physical chemical properties. H-maleate assumes a closed structure and forms a strong intramolecular hydrogen bond whereas H-fumarate has an open structure. X-ray diffraction, infrared and Raman spectroscopy and molecular dynamics have been used to provide a reliable picture of the interactions which characterize the structure of the fluids. All calculations indicate that the choline cation prefers to connect mainly to the carboxylate group through OH⋯O interactions in both the compounds and orient the charged head N(CH3)3+ toward the negative portion of the anion. However, the different structure of the two anions affects the distribution of the ionic components in the fluid. The trans conformation of H-fumarate allows further interactions between anions through COOH and CO2− groups whereas intramolecular hydrogen bonding in H-maleate prevents this association. Our theoretical findings have been validated by comparing them with experimental X-ray data and infrared and Raman spectra.
机译:我们探讨了基于胆碱阳离子和马来酸的单酸的两种离子液体的结构。我们考虑具有不同物理化学性质的阴离子(H-MALEATE,CIS-ISOMER和H-富马酸的H-富马酸异构体,反式异构体)的两种异构体。 H-Maleate假设封闭的结构,形成强大的分子内氢键,而H型富马酸盐具有开放的结构。 X射线衍射,红外和拉曼光谱和分子动力学已经用于提供表征流体结构的相互作用的可靠图像。所有计算表明,胆碱阳离子优美主要通过化合物中的羧酸甲酸盐基团连接到羧酸盐基团中,并将带电的头N(CH3)3+定向阴离子的负部分。然而,两个阴离子的不同结构影响了流体中的离子组分的分布。 H-富马酸酯的反式构象允许通过COOH和CO2-基团之间进一步相互作用,而H-MALEATE中的分子内氢键可防止该缔合。通过将它们与实验X射线数据和红外和拉曼光谱进行比较,我们的理论发现已经过验证。

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