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首页> 外文期刊>The Journal of Chemical Physics >Understanding the impact of the central atom on the ionic liquid behavior: Phosphonium vs ammonium cations
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Understanding the impact of the central atom on the ionic liquid behavior: Phosphonium vs ammonium cations

机译:了解中心原子对离子液体行为的影响:Ph与铵阳离子

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The influence of the cation’s central atom in the behavior of pairs of ammonium- and phosphoniumbased ionic liquids was investigated through the measurement of densities, viscosities, melting temperatures, activity coefficients at infinite dilution, refractive indices, and toxicity against Vibrio fischeri. All the properties investigated are affected by the cation’s central atom nature, with ammonium-based ionic liquids presenting higher densities, viscosities, melting temperatures, and enthalpies. Activity coefficients at infinite dilution show the ammonium-based ionic liquids to present slightly higher infinite dilution activity coefficients for non-polar solvents, becoming slightly lower for polar solvents, suggesting that the ammonium-based ionic liquids present somewhat higher polarities. In good agreement these compounds present lower toxicities than the phosphonium congeners. To explain this behavior quantum chemical gas phase DFT calculations were performed on isolated ion pairs at the BP-TZVP level of theory. Electronic density results were used to derive electrostatic potentials of the identified minimum conformers. Electrostatic potential-derived CHelpG and Natural Population Analysis charges show the P atom of the tetraalkylphosphonium-based ionic liquids cation to be more positively charged than the N atom in the tetraalkylammonium-based analogous IL cation, and a noticeable charge delocalization occurring in the tetraalkylammonium cation, when compared with the respective phosphonium congener. It is argued that this charge delocalization is responsible for the enhanced polarity observed on the ammonium based ionic liquids explaining the changes in the thermophysical properties observed.
机译:通过测量密度,粘度,熔融温度,无限稀释时的活度系数,折射率和对费氏弧菌的毒性,研究了阳离子中心原子对基于铵和phospho的离子液体对行为的影响。所研究的所有特性均受阳离子中心原子性质的影响,基于铵的离子液体表现出更高的密度,粘度,熔融温度和焓。无限稀释时的活度系数表明,基于铵的离子液体对非极性溶剂的无限稀释活度系数会稍高,对于极性溶剂会略有降低,这表明基于铵的离子液体的极性略高。完全吻合的是,这些化合物的毒性低于than同类物。为了解释这种行为,在理论上以BP-TZVP的水平对孤立的离子对进行了量子化学气相DFT计算。电子密度结果用于推导已确定的最小构象异构体的静电势。静电势衍生的CHelpG和自然人口分析电荷显示,四烷基phosph基离子液体阳离子的P原子比四烷基铵基类似IL阳离子的N原子带正电,并且在四烷基铵阳离子中发生明显的电荷离域与各自的con同类物相比。据认为,这种电荷离域作用是导致在基于铵的离子液体上观察到的极性增强的原因,从而解释了所观察到的热物理性质的变化。

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