Alcalde Rafael, Aparicio Santiago, García Begoña, Leal José M
Universidad de Burgos, Departamento de Química, 09001 Burgos, Spain.
J Phys Chem B. 2005 Oct 27;109(42):19908-14. doi: 10.1021/jp0522258.
The structure of the alkyl benzoate + n-alkane, and + alkan-1-ol binary mixtures were analyzed according to the Kirkwood-Buff fluctuation theory on the basis of both the mixture properties measured over a wide temperature range and the activity coefficients calculated with the modified UNIFAC (Dortmund) model as well. Application of this model reveals that both the microheterogeneous structure and the clustering effects are strongly dependent on the chain length of the n-alkane and alkan-1-ol cosolvents. Knowledge of the local composition around each type of molecule is drawn from the Kirkwood-Buff integrals and the excess (or deficit) molecules aggregated around a central one. The rather high values of the integrals evaluated for some of these systems provide first-hand evidence for phase splitting. The conclusions drawn support previous analyses and confirm the adequacy of the methodology put forward for studying liquid mixtures at microscopic level; easily measurable experimental properties can advantageously be used with the fluctuation theory.
根据柯克伍德-布夫涨落理论,基于在较宽温度范围内测量的混合物性质以及用修正的UNIFAC(多特蒙德)模型计算的活度系数,对苯甲酸烷基酯 + 正构烷烃以及 + 链烷-1-醇二元混合物的结构进行了分析。该模型的应用表明,微观非均相结构和聚集效应都强烈依赖于正构烷烃和链烷-1-醇共溶剂的链长。从柯克伍德-布夫积分以及围绕中心分子聚集的过量(或不足)分子中,可以得出每种分子周围局部组成的信息。对其中一些体系评估得到的积分相当高的值,为相分离提供了第一手证据。所得结论支持先前的分析,并证实了为在微观层面研究液体混合物而提出的方法的充分性;易于测量的实验性质可以有利地与涨落理论一起使用。