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首页> 外文期刊>Journal of Molecular Liquids >A comprehensive study on the impact of the substituent on pK(a) of phenylboronic acid in aqueous and non-aqueous solutions: A computational approach
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A comprehensive study on the impact of the substituent on pK(a) of phenylboronic acid in aqueous and non-aqueous solutions: A computational approach

机译:综合研究苯硼酸在水性和非水溶液中PK(A)的影响:计算方法

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The acid dissociation constant (pK(a)) is the fundamental physicochemical properties required to understand the structure and reactivity of boronic acid-based material as a sensor that identifies carbohydrates. However, there is a lack of comprehensive study on the impact of the substituent on the pK(a) of monosubstituted phenylboronic acid in aqueous and non-aqueous solutions. In this work, extensive experimental data on the pK(a) of monosubstituted phenylboronic acid in an aqueous solution was reviewed and compared in terms of accuracy. In addition, computational, were used to predict and investigate the impact of the substituent on the pK(a) for a series of monosubstituted phenylboronic acid in an aqueous solution at the molecular level. Good agreement was observed between predicted and literature pK(a) values of monosubstituted phenylboronic acid in the aqueous solution. While some deviations exist, predominantly with fluorine-containing phenylboronic acid, the COSMO-RS model is proficient at predicting the pK(a) of boronic acid in an aqueous solution with the accuracy of +/- 1.5 pK(a). Subsequently, the model was used to predict the pK(a) of boronic acid in the non-aqueous solution, which data is not available in the literature. Furthermore, an excellent relationship is observed between the acidity of para-substituted, and to some extent, meta-substituted phenylboronic acid with the atomic charge of acidic hydrogen calculated using Natural Bond Orbital (NBO) Population Analysis. In contrast, the steric hindrance and the existence of other molecular forces might influence the acidity of ortho-substituted phenylboronic acid. The gathered information in this work could be of benefit for the understanding of the acidity of the boronic acid-based materials not only as a sensor but also in many diverse areas. (C) 2021 Elsevier B.V. All rights reserved.
机译:酸离解常数(pK(a))是理解硼酸基材料作为识别碳水化合物传感器的结构和反应性所需的基本物理化学性质。然而,对于取代基对单取代苯硼酸在水溶液和非水溶液中的pK(a)的影响缺乏全面的研究。在这项工作中,我们回顾了大量关于单取代苯硼酸在水溶液中的pK(a)的实验数据,并从准确性方面进行了比较。此外,我们还利用计算方法在分子水平上预测和研究了取代基对一系列单取代苯硼酸在水溶液中的pK(a)的影响。水溶液中单取代苯硼酸的预测值与文献中的pK(a)值之间存在良好的一致性。虽然存在一些偏差,主要是含氟苯硼酸,但COSMO-RS模型能够熟练预测硼酸在水溶液中的pK(a),准确度为+/-1.5 pK(a)。随后,该模型被用于预测硼酸在非水溶液中的pK(a),这在文献中是不可用的。此外,通过自然键轨道(NBO)布居分析计算了对取代苯硼酸和间取代苯硼酸的酸度与酸性氢原子电荷之间的良好关系。相比之下,空间位阻和其他分子力的存在可能会影响邻取代苯硼酸的酸度。这项工作中收集到的信息有助于理解硼酸基材料的酸度,不仅是作为传感器,而且在许多不同的领域也是如此。(c)2021爱思唯尔B.V.保留所有权利。

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