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The Role of Charge Transfer in the Formation of Type I Deep Eutectic Solvent-Analogous Ionic Liquid Mixtures

机译:电荷转移在I型深共晶类比离子液体混合物形成中的作用

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摘要

It was recently shown that tetramethylammonium chloride presented negative deviations to ideality when mixed with tetraethylammonium chloride or tetrapropylammonium chloride, leading to a strong decrease of the melting points of these salt mixtures, in a behavior akin to that observed in the formation of deep eutectic solvents. To better rationalize this unexpected melting point depression between two structurally similar compounds devoid of dominant hydrogen bonding capability, new solid–liquid equilibria data for tetramethylammonium-based systems were measured and analyzed in this work. Molecular dynamics was used to show that the strong negative deviations from ideality presented by these systems arise from a synergetic share of the chloride ions. A transfer of chloride ions seems to occur from the bigger cation in the mixture (which possesses a more disperse charge) to the smaller cation (tetramethylammonium), resembling the formation of metal–chloride complexes in type I deep eutectic solvents. This rearrangement of the charged species leads to an energetic stabilization of both components in the mixture, inducing the negative deviations to the ideality observed. The conclusions presented herein emphasize the often-neglected contribution of charge delocalization in deep eutectic solvents formation and its applicability toward the design of new ionic liquid mixtures.
机译:最近显示,当与四乙基氯化铵或四丙基氯化铵混合时,四甲基氯化铵呈现出理想理想的负偏差,导致这些盐混合物的熔点大大降低,其行为类似于在形成深共熔溶剂时观察到的行为。为了更好地合理化两个结构相似的化合物之间没有主要氢键合能力的出乎意料的熔点降低,在这项工作中对四甲基铵基系统的新的固液平衡数据进行了测量和分析。分子动力学被用来表明这些系统呈现出的与理想状态的强烈负偏差是由于氯离子的协同作用引起的。氯离子似乎从混合物中较大的阳离子(具有更大的分散电荷)转移到较小的阳离子(四甲基铵),类似于在I型深共熔溶剂中形成金属-氯化物络合物。带电物质的这种重排导致混合物中两种组分的能量稳定,从而导致所观察到的理想性产生负偏差。本文提出的结论强调了在深共熔溶剂形成过程中电荷离域化的常被忽略,以及其在设计新的离子液体混合物中的适用性。

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