首页> 外文期刊>Colloids and Surfaces, A. Physicochemical and Engineering Aspects >Quantum chemical approach to the description of the amphiphile clusterization at the air/liquid and liquid/liquid interfaces with phase nature accounting. II. 1-(n-Alkyl)-imidazoles at the air/water interface
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Quantum chemical approach to the description of the amphiphile clusterization at the air/liquid and liquid/liquid interfaces with phase nature accounting. II. 1-(n-Alkyl)-imidazoles at the air/water interface

机译:量子化学方法用于描述两相物质在空气/液体和液体/液体界面处的聚类,并具有相性质说明。二。空气/水界面处的1-(正烷基)-咪唑

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In the framework of the model for surfactant clusterization description at the air/liquid and liquid/liquid interfaces proposed earlier (Vysotsky et al. J. Phys. Chem. B, 2015,119 (7), 3281-3296) and based on the quantum chemical semi -empirical PM3 method the structural and thermodynamic parameters of the formation of 1-(N-alkyl)-imidazole monolayers with alkyl chain lengths of 6-16 carbon atoms at the air/water interface are calculated. The model allows the calculation of the thermodynamic parameters (enthalpy, entropy and the Gibbs' energy) of monomers, clusters and monolayers at the interface between two liquids or between the air and liquid phases. To obtain such results one needs to calculate the corresponding thermodynamic parameters for both adjacent phases within the semi -empirical PM3 method (in the frameworks of the COSMO procedure), then to calculate the increments from the different types of the pairwise interactions and, with the help of the additive scheme, to calculate the required parameters. It has been shown that 1-(n-alkyl)-imidazole forms monolayers with hexagonal and oblique unit cells normal conditions. The parameters of the unit cell are calculated for each of these monolayers: 4.6 angstrom and 7.2 angstrom (the angle gamma between the sides of the unit cell is equal to 62 degrees) for the hexagonal unit cells and 4.6 angstrom and 4.6 angstrom (gamma = 80 degrees) for the oblique unit cells. Enthalpy, entropy and Gibbs' energy for small clusters (dimers-hexamers), representing the structural elements of the investigated monolayers, are calculated. The probable way of the clusterization process is proposed on the basis of these parameters. In the framework of the model the thermodynamic functions of the monolayer formation are calculated. These results indicate that for both types of the monolayers (with oblique and hexagonal unit cells) spontaneous clusterization is possible when the alkyl chain length is >= 14-15 carbon atoms. (C) 2016 Elsevier B.V. All rights reserved.
机译:在较早提出的关于在空气/液体和液体/液体界面进行表面活性剂聚类描述的模型的框架中(Vysotsky et al.J.Phys.Chem.B,2015,119(7),3281-3296),并基于量子化学半经验PM3方法计算了在空气/水界面形成烷基链长为6-16个碳原子的1-(N-烷基)-咪唑单层的结构和热力学参数。该模型可以计算两种液体之间或空气与液相之间的界面处的单体,团簇和单分子层的热力学参数(焓,熵和吉布斯能)。为了获得这样的结果,需要在半经验PM3方法中(在COSMO方法的框架内)为两个相邻相计算相应的热力学参数,然后从不同类型的成对相互作用中计算增量,并使用借助加性方案,计算所需的参数。已经显示1-(正烷基)-咪唑在正常条件下与六边形和倾斜晶胞形成单层。为以下每个单层计算单位晶胞的参数:六角形晶胞和4.6埃和4.6埃(伽玛= 4.6埃和7.2埃(晶胞的侧面之间的夹角gamma等于62度)) 80度)。计算代表研究的单层结构元素的小簇(二聚体-六聚体)的焓,熵和吉布斯能量。在这些参数的基础上,提出了可能的聚类方法。在模型的框架内,计算了单层形成的热力学函数。这些结果表明,对于两种类型的单分子层(具有倾斜的和六边形的晶胞),当烷基链长> = 14-15个碳原子时,都可能自发聚集。 (C)2016 Elsevier B.V.保留所有权利。

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