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首页> 外文期刊>ACS Omega >Relationship between the Bulk and Surface Basicity of Aliphatic Amines: A Quantum Chemical Approach
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Relationship between the Bulk and Surface Basicity of Aliphatic Amines: A Quantum Chemical Approach

机译:脂族胺的散装与表面碱度的关系:量子化学方法

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摘要

To assess the surface basicity constant (pK _(b)) of aliphatic amine films, the use of a theoretical approach recently developed to evaluate the pK _(a) of carboxylic acid monolayers on the water surface is tested. The present paper gives a new full picture of the change of acid–base properties of surfactants during their aggregation at the air/water interface. The exploited approach is simple because it does not involve the construction of thermodynamic cycles but uses the Gibbs energies of the formation and dimerization of surfactant monomers in neutral and ionized forms in the aqueous and gaseous phases. The quantum chemical semiempirical PM3 method is applied to perform calculations using a conductor-like screening model, which takes into account the aqueous phase. The calculation shows that aliphatic amines, as well as carboxylic acids, are characterized by a change of the value of the basicity/acidity constant during the film formation. The film formation of surfactants leads to a decrease in their acid–base properties, i.e., the surface pK _(a) values of carboxylic acids and pK _(b) values of amines increase. However, unlike carboxylic acids, there is practically no dependence of the surface pK _(b) value on the alkyl chain length of the aliphatic amine, which is caused by almost identical contributions of one CH_(2) fragment to the solvation Gibbs energy of neutral and ionized monomers within the calculation error. The obtained results agree with existing experimental data.
机译:为了评估脂族胺薄膜的表面碱性常数(P K _(b)),最近开发的理论方法的使用评价水面上的羧酸单层的P k _(a)经过测试。本文给出了在空气/水界面的聚集期间表面活性剂酸碱性能的新全图。利用方法很简单,因为它不涉及热力学循环的构建,但使用在水性和气态相中中性和电离形式的表面活性剂单体的形成和二聚化的GIBBS能量。施用量子化学半透级PM3方法用于使用导体样筛选模型进行计算,这考虑了水相。该计算表明,脂族胺以及羧酸的特征在于在薄膜形成期间的碱性/酸度常数的值的变化。表面活性剂的膜形成导致其酸碱性质的降低,即羧酸的表面P K(B)值​​增加。然而,与羧酸不同,几乎没有表面P k _(b)值对脂族胺的烷基链长度的依赖性,这是由一个CH_(2)片段的几乎相同的贡献引起的计算误差内中性和电离单体的溶剂化吉布斯能量。获得的结果与现有的实验数据一致。

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