School of Molecular Sciences & the Magnetic Resonance Research Center , Arizona State University , Tempe , Arizona 85287-1604 , United States.
J Phys Chem B. 2019 Feb 28;123(8):1815-1821. doi: 10.1021/acs.jpcb.8b10632. Epub 2019 Feb 19.
Protic ionic liquids (PILs) are made by proton transfer from a Brønsted acid to a base and are of interest for their solvent and electrolyte properties such as high ionic conductivity. Unfortunately, many PILs have been misnamed, because their ionic content is minimal due to an insufficient driving force for the proton transfer. Here we review this problem and introduce a new method, using N NMR spectroscopy, of characterizing the relation between the extent of proton transfer to a given base and the strength of the proton-donating acid. The experimental data reveal a sigmoid "titration type" curve that indicates clearly the acid strength, at which molecule bases, of substituted pyridine type, are fully protonated. We compare results for two bases of similar shape but different basicity, protonated by equimolar amounts of the different acids. The extent of protonation is also reflected in the ionic conductivity, and we show that the important part of the protonation sigmoid is quantitatively reproduced by data for conductivity and viscosity displayed in the form of a Walden plot (log equivalent conductivity vs log fluidity). The acid strength, for this study, is based on gas phase proton affinities, but we note that a similar sigmoid is obtained if we use the condensed phase Hammett acidity functions instead. Our findings allow us to rank the AlCl anion as the weakest proton acceptor in use in IL studies, consistent with its role in the most conductive ILs.
质子离子液体(PILs)是通过质子从布朗斯特酸转移到碱而形成的,由于其溶剂和电解质性质(如高离子电导率)而受到关注。不幸的是,由于质子转移的驱动力不足,许多 PILs 被错误命名,因为它们的离子含量很少。在这里,我们回顾了这个问题,并介绍了一种新的方法,使用 N NMR 光谱来表征给定碱的质子转移程度与质子供体酸强度之间的关系。实验数据揭示了一种“S 形”“滴定型”曲线,清楚地表明了酸强度,在该酸强度下,取代吡啶型的分子碱被完全质子化。我们比较了两种形状相似但碱性不同的碱的结果,它们被等摩尔量的不同酸质子化。质子化程度也反映在离子电导率中,我们表明,质子化 S 形的重要部分可以通过以 Walden 图(等效电导率的对数与流体的对数)形式显示的电导率和粘度数据定量再现。对于这项研究,酸强度基于气相质子亲和力,但我们注意到,如果我们使用凝聚相哈米特酸度函数,也会得到类似的 S 形。我们的发现使我们能够将 AlCl 阴离子排在在 IL 研究中使用的最弱质子受体中,这与其在最导电的 IL 中的作用一致。