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Quantifying intermolecular interactions of ionic liquids using cohesive energy densities

机译:使用内聚能密度量化离子液体的分子间相互作用

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For ionic liquids (ILs), both the large number of possible cation?+?anion combinations and their ionic nature provide a unique challenge for understanding intermolecular interactions. Cohesive energy density, ced , is used to quantify the strength of intermolecular interactions for molecular liquids, and is determined using the enthalpy of vaporization. A critical analysis of the experimental challenges and data to obtain ced for ILs is provided. For ILs there are two methods to judge the strength of intermolecular interactions, due to the presence of multiple constituents in the vapour phase of ILs. Firstly, ced IP, where the ionic vapour constituent is neutral ion pairs, the major constituent of the IL vapour. Secondly, ced C+A, where the ionic vapour constituents are isolated ions. A ced IP dataset is presented for 64 ILs. For the first time an experimental ced C+A, a measure of the strength of the total intermolecular interaction for an IL, is presented. ced C+A is significantly larger for ILs than ced for most molecular liquids, reflecting the need to break all of the relatively strong electrostatic interactions present in ILs. However, the van der Waals interactions contribute significantly to IL volatility due to the very strong electrostatic interaction in the neutral ion pair ionic vapour. An excellent linear correlation is found between ced IP and the inverse of the molecular volume. A good linear correlation is found between IL ced IP and IL Gordon parameter (which are dependent primarily on surface tension). ced values obtained through indirect methods gave similar magnitude values to ced IP. These findings show that ced IP is very important for understanding IL intermolecular interactions, in spite of ced IP not being a measure of the total intermolecular interactions of an IL. In the outlook section, remaining challenges for understanding IL intermolecular interactions are outlined.
机译:对于离子液体(IL),大量可能的阳离子+阴离子组合及其离子性质都为理解分子间的相互作用提供了独特的挑战。内聚能密度ced用于量化分子液体之间分子间相互作用的强度,并使用汽化焓来确定。提供了对实验挑战和获得ILs的数据的严格分析。对于IL,由于IL气相中存在多种成分,因此有两种方法来判断分子间相互作用的强度。首先是ce IP ,其中离子蒸汽成分是中性离子对,这是IL蒸气的主要成分。其次,是 C + A ,其中的离子蒸气成分是孤立的离子。提供了针对64个IL的ced IP 数据集。首次提出了实验ced C C + A ,用于测量IL的总分子间相互作用的强度。 ILs的ced C + A 明显大于大多数分子液体的ced,反映出需要打破IL中存在的所有相对较强的静电相互作用。但是,由于中性离子对离子蒸气中非常强的静电相互作用,范德华相互作用对IL挥发性有显着贡献。在ced IP 与分子体积的倒数之间发现极好的线性相关性。在IL ced IP 和IL Gordon参数(主要取决于表面张力)之间发现了良好的线性相关性。通过间接方法获得的ced值给出了与ced IP 相似的幅度值。这些发现表明,尽管ced IP 不能衡量IL的全部分子间相互作用,但是ced的 IP 对于理解IL的分子间相互作用非常重要。在展望部分中,概述了了解IL分子间相互作用的剩余挑战。

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