Materials Centre, Department of Chemistry, University of Leicester, Leicester LE1 7RH, UK.
Faraday Discuss. 2018 Jan 1;206:365-377. doi: 10.1039/c7fd00153c. Epub 2017 Sep 19.
Despite the importance of ionic liquids in a variety of fields, little is understood about the behaviour of protons in these media. The main difficulty arises due to the unknown activity of protons in non-aqueous solvents. This study presents acid dissociation constants for nine organic acids in deep eutectic solvents (DESs) using standard pH indicator solutes. The pK value for bromophenol blue was found by titrating the DES with triflic acid. The experimental method was developed to understand the acid-base properties of deep eutectic solvents, and through this study it was found that the organic acids studied were slightly less dissociated in the DES than in water with pK values between 0.2 and 0.5 higher. pK values were also determined for two ionic liquids, [Bmim][BF] and [Emim][acetate]. The anion of the ionic liquid changes the pH of the solution by acting as a buffer. [Emim][acetate] was found to be more basic than water. It is also shown that water significantly affects the pH of ionic liquids. This is thought to arise because aqueous mixtures with ionic liquids form heterogeneous solutions and the proton partitions into the aqueous phase. This study also attempted to develop an electrochemical pH sensor. It was shown that a linear response of cell potential vs. ln a could be obtained but the slope for the correlation was less than that obtained in aqueous solutions. Finally it was shown that the liquid junction potential between two reference electrodes immersed in different DESs was dependent upon the pH difference between the liquids.
尽管离子液体在许多领域都很重要,但人们对质子在这些介质中的行为知之甚少。由于在非水溶剂中质子的活性未知,主要的困难由此产生。本研究使用标准 pH 指示剂溶质测定了九种有机酸在深共晶溶剂 (DES) 中的酸离解常数。用三氟乙酸滴定 DES 确定了溴酚蓝的 pK 值。该实验方法旨在了解深共晶溶剂的酸碱性质,通过这项研究发现,所研究的有机酸在 DES 中的离解程度略低于在水中,pK 值高 0.2 到 0.5。还测定了两种离子液体[Bmim][BF]和[Emim][acetate]的 pK 值。离子液体的阴离子通过充当缓冲液来改变溶液的 pH 值。发现[Emim][acetate]比水更碱性。还表明水会显著影响离子液体的 pH 值。这被认为是因为与离子液体形成非均相溶液的水混合物,质子会分配到水相中。本研究还试图开发电化学 pH 传感器。结果表明,可以获得电池电势与 ln a 的线性响应,但相关的斜率小于在水溶液中获得的斜率。最后表明,浸入不同 DES 中的两个参比电极之间的液体结电位取决于液体之间的 pH 差异。