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考虑相性质的情况下,用于描述两亲分子在气/液和液/液界面聚集的量子化学方法。I. 脂肪族正醇在气/水界面的情况。

Quantum chemical approach in the description of the amphiphile clusterization at the air/liquid and liquid/liquid interfaces with phase nature accounting. I. Aliphatic normal alcohols at the air/water interface.

作者信息

Vysotsky Yuri B, Belyaeva Elena A, Kartashynska Elena S, Fainerman Valentine B, Smirnova Natalia A

机构信息

Donetsk National Technical University , 58 Artema Street, 83000 Donetsk, Ukraine.

出版信息

J Phys Chem B. 2015 Feb 19;119(7):3281-96. doi: 10.1021/jp512099x. Epub 2015 Feb 2.

DOI:10.1021/jp512099x
PMID:25640463
Abstract

A new model based on the quantum chemical approach is proposed to describe structural and thermodynamic parameters of clusterization for substituted alkanes at the air/liquid and liquid/liquid interfaces. The new model by the authors, unlike the previous one, proposes an explicit account of the liquid phase (phases) influence on the parameters of monomers, clusters and monolayers of substituted alkanes at the regarded interface. The calculations were carried out in the frameworks of the quantum chemical semiempirical PM3 method (Mopac 2012), using the COSMO procedure. The new model was tested in the calculations of the clusterization parameters of fatty alcohols under the standard conditions at the air/water interface. The enthalpy, Gibbs' energy and absolute entropy of formation for alcohol monomers alongside with clusterization parameters for the cluster series including the monolayer at air/water interface were calculated. In our calculations the sinkage of monomers, molecules in clusters and monolayers was varied from 1 up to 5 methylene groups. Thermodynamic parameters calculated using the proposed model for the alcohol monolayers are in a good agreement with the corresponding experimental data. However, the proposed model cannot define the most energetically preferable immersion of the monolayer molecules in the water phase.

摘要

提出了一种基于量子化学方法的新模型,用于描述取代烷烃在气/液和液/液界面处的聚集结构和热力学参数。与之前的模型不同,作者提出的新模型明确考虑了液相(多个相)对取代烷烃在所述界面处的单体、聚集体和单分子层参数的影响。计算是在量子化学半经验PM3方法(Mopac 2012)的框架内进行的,使用了COSMO程序。新模型在标准条件下气/水界面处脂肪醇聚集参数的计算中进行了测试。计算了醇单体的形成焓、吉布斯自由能和绝对熵,以及包括气/水界面单分子层在内的聚集体系列的聚集参数。在我们的计算中,单体、聚集体和单分子层中分子的下沉量从1个亚甲基到5个亚甲基不等。使用所提出的模型计算的醇单分子层的热力学参数与相应的实验数据吻合良好。然而,所提出的模型无法确定单分子层分子在水相中的最有利能量浸入情况。

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