Paenurk Eno, Kaupmees Karl, Himmel Daniel, Kütt Agnes, Kaljurand Ivari, Koppel Ilmar A, Krossing Ingo, Leito Ivo
Institute of Chemistry , University of Tartu , Ravila 14a Str , 50411 Tartu , Estonia . Email:
Institut für Anorganische und Analytische Chemie and Freiburger Materialforschungs-zentrum (FMF) , Albert-Ludwigs-Universität Freiburg , Albertstr. 21 , 79104 Freiburg , Germany . Email:
Chem Sci. 2017 Oct 1;8(10):6964-6973. doi: 10.1039/c7sc01424d. Epub 2017 Aug 7.
The most comprehensive solvent acidity scale spanning 28 orders of magnitude of acidity was measured in the low-polarity solvent 1,2-dichloroethane (DCE). Its experimental core is linked to the unified acidity scale (pH) in an unprecedented and generalized approach only based on experimental values. This enables future measurements of acid strengths and acidity adjustments in low polarity solvents. The scale was cross-validated computationally. The purely experimental and computational data agree very well. The DCE scale includes 87 buffer systems with values between -13.0 and +15.4, similar to water at hypothetical and extreme pH values of -13.0 to +15.4. Unusually, such high acidities in DCE are not realized solvated protons, but rather through strongly acidic molecules able to directly donate their proton, even to weak bases dissolved in the solution. Thus, in all examined cases, not a single solvated proton is present in one liter of DCE.
在低极性溶剂1,2 - 二氯乙烷(DCE)中测量了涵盖28个酸度数量级的最全面的溶剂酸度标度。其实验核心以前所未有的广义方法仅基于实验值与统一酸度标度(pH)相关联。这使得未来能够在低极性溶剂中测量酸强度和进行酸度调节。该标度通过计算进行了交叉验证。纯实验数据和计算数据吻合得非常好。DCE标度包括87个缓冲体系,其值在-13.0至+15.4之间,类似于在假设的极端pH值-13.0至+15.4时的水。不同寻常的是,DCE中如此高的酸度并非通过溶剂化质子实现,而是通过能够直接给出质子的强酸性分子,甚至是给予溶解在溶液中的弱碱。因此,在所有检测的情况下,一升DCE中不存在单个溶剂化质子。