离子液体在极性和非极性表面上的接触角与润湿性。

Contact angles and wettability of ionic liquids on polar and non-polar surfaces.

作者信息

Pereira Matheus M, Kurnia Kiki A, Sousa Filipa L, Silva Nuno J O, Lopes-da-Silva José A, Coutinho João A P, Freire Mara G

机构信息

CICECO - Aveiro Institute of Materials, Department of Chemistry, University of Aveiro, 3810-193 Aveiro, Portugal.

Center of Research in Ionic Liquids, Department of Chemical Engineering, Universiti Teknologi PETRONAS, Bandar Seri Iskandar, 32610 Perak, Malaysia.

出版信息

Phys Chem Chem Phys. 2015 Dec 21;17(47):31653-31661. doi: 10.1039/c5cp05873b.

Abstract

Many applications involving ionic liquids (ILs) require the knowledge of their interfacial behaviour, such as wettability and adhesion. In this context, herein, two approaches were combined aiming at understanding the impact of the IL chemical structures on their wettability on both polar and non-polar surfaces, namely: (i) the experimental determination of the contact angles of a broad range of ILs (covering a wide number of anions of variable polarity, cations, and cation alkyl side chain lengths) on polar and non-polar solid substrates (glass, Al-plate, and poly-(tetrafluoroethylene) (PTFE)); and (ii) the correlation of the experimental contact angles with the cation-anion pair interaction energies generated by the Conductor-like Screening Model for Real Solvents (COSMO-RS). The combined results reveal that the hydrogen-bond basicity of ILs, and thus the IL anion, plays a major role through their wettability on both polar and non-polar surfaces. The increase of the IL hydrogen-bond accepting ability leads to an improved wettability of more polar surfaces (lower contact angles) while the opposite trend is observed on non-polar surfaces. The cation nature and alkyl side chain lengths have however a smaller impact on the wetting ability of ILs. Linear correlations were found between the experimental contact angles and the cation-anion hydrogen-bonding and cation ring energies, estimated using COSMO-RS, suggesting that these features primarily control the wetting ability of ILs. Furthermore, two-descriptor correlations are proposed here to predict the contact angles of a wide variety of ILs on glass, Al-plate, and PTFE surfaces. A new extended list is provided for the contact angles of ILs on three surfaces, which can be used as a priori information to choose appropriate ILs before a given application.

摘要

许多涉及离子液体(ILs)的应用都需要了解它们的界面行为,如润湿性和粘附性。在此背景下,本文结合了两种方法,旨在了解离子液体化学结构对其在极性和非极性表面上润湿性的影响,即:(i)通过实验测定多种离子液体(涵盖多种极性可变的阴离子、阳离子以及阳离子烷基侧链长度)在极性和非极性固体基质(玻璃、铝板和聚四氟乙烯(PTFE))上的接触角;(ii)将实验接触角与由真实溶剂的导体类筛选模型(COSMO-RS)生成的阳离子-阴离子对相互作用能进行关联分析。综合结果表明,离子液体的氢键碱性,进而离子液体的阴离子,通过它们在极性和非极性表面上的润湿性起着主要作用。离子液体氢键接受能力的增强会导致在极性更强的表面上润湿性提高(接触角降低),而在非极性表面上则观察到相反的趋势。然而,阳离子性质和烷基侧链长度对离子液体的润湿能力影响较小。实验接触角与使用COSMO-RS估算的阳离子-阴离子氢键和阳离子环能之间存在线性相关性,这表明这些特征主要控制着离子液体的润湿能力。此外,本文提出了双描述符相关性来预测多种离子液体在玻璃、铝板和PTFE表面上的接触角。提供了一份新的扩展列表,列出了离子液体在这三种表面上的接触角,可作为在特定应用之前选择合适离子液体的先验信息。

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