Moreno Daniel, Gonzalez-Miquel Maria, Ferro Victor R, Palomar Jose
Sección de Ingeniería Química, Universidad Autónoma de Madrid, C/Francisco Tomás y Valiente 7, 28049, Madrid, Spain.
School of Chemical Engineering and Analytical Science, The University of Manchester, Manchester, M13 9PL, UK.
Chemphyschem. 2018 Apr 5;19(7):801-815. doi: 10.1002/cphc.201701093. Epub 2018 Feb 28.
Zwitterion ionic liquids (ZIs) are compounds in which both counterions are covalently tethered, conferring them with unique characteristics; however, most of their properties are still unknown, representing a bottleneck to exploit their practical applications. Herein, the molecular and fluid properties of ZIs and their mixtures were explored by means of quantum chemical analysis based on the density functional theory (DFT) and COSMO-RS method, and compared against homologous ionic liquids (ILs) to provide a comprehensive overview of the effect of the distinct structures on their physicochemical and thermodynamic behavior. Overall, ZIs were revealed as compounds with higher polarity and stronger hydrogen-bonding capacity, implying higher density, viscosity, melting point, and even lower volatility than structurally similar ILs. The phase equilibrium of binary and ternary systems supports stronger attractive interactions between ZIs and polar compounds, whereas higher liquid-liquid immiscibility with nonpolar compounds may be expected. Ultimately, the performance of ZIs in the wider context of separation processes is illustrated, while providing molecular insights to allow their selection and design for relevant applications.
两性离子液体(ZIs)是一种化合物,其中两种抗衡离子都通过共价键连接,赋予它们独特的特性;然而,它们的大多数性质仍然未知,这成为开发其实际应用的一个瓶颈。在此,通过基于密度泛函理论(DFT)和COSMO-RS方法的量子化学分析,探索了两性离子液体及其混合物的分子和流体性质,并与同源离子液体(ILs)进行比较,以全面概述不同结构对其物理化学和热力学行为的影响。总体而言,两性离子液体被揭示为具有更高极性和更强氢键能力的化合物,这意味着与结构相似的离子液体相比,它们具有更高的密度、粘度、熔点,甚至更低的挥发性。二元和三元体系的相平衡支持两性离子液体与极性化合物之间更强的吸引相互作用,而与非极性化合物之间可能具有更高的液-液不混溶性。最终,展示了两性离子液体在更广泛的分离过程中的性能,同时提供分子层面的见解,以便为相关应用选择和设计它们。