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所有的极性分子都是亲水的吗?在水溶液中酮和酯的水合数。

Are all polar molecules hydrophilic? Hydration numbers of ketones and esters in aqueous solution.

机构信息

Division of Natural Resources and Echo-materials, Graduate School of Agriculture, Tokyo University of Agriculture and Technology, 3-5-8 Saiwai-cho, Fuchu, Tokyo 183-8509, Japan.

出版信息

J Phys Chem B. 2013 Jun 27;117(25):7718-23. doi: 10.1021/jp4029968. Epub 2013 Jun 17.

Abstract

Hydration numbers of typical polar compounds like ketones and esters in aqueous solution were precisely determined using high-frequency dielectric relaxation techniques up to a frequency of 50 GHz at 25 °C. Because the hydration number is one of the most quantitative parameters to demonstrate how much are molecules hydrophilic, it is a critical parameter to determine the hydrophilicity of compounds. Hydration numbers of some ketones bearing carbonyl groups were determined to be ca. 0 irrespective of the species of molecules. Moreover, hydration numbers of some esters were also evaluated to be ca. 0 as well as the ketones. These findings suggested that there is no hydrogen bond formation between the ester group and water molecules, nor is there the hydrogen bond formation between the carbonyl group and water molecules. Consequently, esters and ketones bearing typical polar groups are not classified into hydrophilic compounds, but into "hydroneutral" compounds positioned between hydrophilic and hydrophobic ones. Molecular motions of the examined polar molecules in aqueous solution were well described with single Debye-type rotational relaxation modes without strong interaction between solute and water molecules, and also between solute molecules because of the obtained Kirkwood factor close to unity. This independent rotational mode for the polar compounds results from the hydroneutral characteristics caused by the relationship n(H) = 0.

摘要

采用高频介电弛豫技术,在 25°C 下精确测定了典型极性化合物(如酮和酯)在水溶液中的水合数,频率高达 50GHz。由于水合数是定量表示分子亲水性程度的最关键参数之一,因此它是确定化合物亲水性的关键参数。研究发现,一些含有羰基的酮的水合数约为 0,而不论分子的种类如何。此外,一些酯的水合数也被评估为约为 0,与酮相似。这些发现表明,酯基与水分子之间没有氢键形成,羰基与水分子之间也没有氢键形成。因此,含有典型极性基团的酯和酮既不属于亲水化合物,也不属于“水合中性”化合物,而是介于亲水化合物和疏水化合物之间。在所研究的极性分子在水溶液中的分子运动可以用单一的德拜型旋转弛豫模式很好地描述,这是由于溶质和水分子之间,以及溶质分子之间没有强相互作用,同时由于得到的 Kirkwood 因子接近 1。这种极性化合物的独立旋转模式是由水合中性特性引起的,其原因是 n(H) = 0。

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