Ramírez E, Santana A, Cruz A, López G E
Theoretical and Computational Chemistry Group, Department of Chemistry, University of Puerto Rico, P.O. Box 9019, Mayagüez, Puerto Rico 00681.
J Chem Phys. 2007 Dec 14;127(22):224703. doi: 10.1063/1.2802505.
The study of Langmuir monolayers has generated the attention of researchers because of their unique properties and their not well understood phase equilibrium. These monolayers exhibit interesting phase diagrams where the unusual liquid-liquid equilibrium can be observed for a single component monolayer. Monte Carlo computer simulations in the virtual Gibbs ensemble were used to obtain the phase diagram of Langmuir monolayers. The liquid-vapor and liquid-liquid phase equilibria were considered by constructing the Cailletet-Mathias phase diagrams. By using the Ising model and the rectilinear approximations the identification of the critical properties for both equilibria was determined. These critical parameters were calculated as a function of the strength of the interaction between the surfactant molecules and the aqueous subphase. As a result, we have identified the coexistence between a liquid expanded state (LES)-vapor and the liquid condensed state-LES, in agreement with experimental and theoretical evidence in the literature. We obtained a clear separation of phases and a strong dependence on the strength of the solvent used. Namely, as the interaction between the solvent and the head of the surfactant increases, the critical properties also increase. Equilibrium states were characterized by computing thermodynamic quantities as a function of temperature and solvent strength.
由于其独特的性质以及尚未被充分理解的相平衡,朗缪尔单分子层的研究引起了研究人员的关注。这些单分子层展现出有趣的相图,在单组分单分子层中可以观察到异常的液 - 液平衡。在虚拟吉布斯系综中使用蒙特卡罗计算机模拟来获得朗缪尔单分子层的相图。通过构建凯莱泰 - 马蒂亚斯相图来考虑液 - 气和液 - 液相平衡。利用伊辛模型和直线近似法确定了两种平衡的临界性质。这些临界参数是作为表面活性剂分子与水相之间相互作用强度的函数来计算的。结果,我们确定了液体膨胀态(LES) - 气相和液体凝聚态 - LES之间的共存,这与文献中的实验和理论证据一致。我们得到了清晰的相分离,并且对所用溶剂的强度有很强的依赖性。也就是说,随着溶剂与表面活性剂头部之间的相互作用增加,临界性质也增加。通过计算作为温度和溶剂强度函数的热力学量来表征平衡态。