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具有内偶极子的朗缪尔单层:使用蒙特卡罗模拟理解相行为。

Langmuir monolayers with internal dipoles: Understanding phase behavior using Monte Carlo simulations.

机构信息

Department of Chemistry, Northwestern University, Evanston, Illinois 60208, USA.

出版信息

J Chem Phys. 2010 Jan 7;132(1):014703. doi: 10.1063/1.3280389.

Abstract

A coarse-grained, rigid-rod model that includes steric interactions and an internal dipole is used to study monolayers of surfactant molecules tethered to a flat interface. Monte Carlo simulations are performed in the canonical ensemble for a range of high-density configurations with varying degrees of dipole strength. Both a melting transition and a tilting transition are observed, and the dependence of the transitions on the surfactant molecules' internal dipoles is examined. Simulation results indicate that at high packing densities, the monolayers exist in a frustrated state due to dipole-dipole repulsions and steric interactions. Tilting of the surfactant molecules increases the magnitude of the dipole-dipole attractions and lowers the overall system energy, but is limited by steric repulsions. In simulations with higher dipole strengths, the melting and tilting transitions are found to be coupled. The formation of nanodomains with increased collective tilt and positional order in these systems suggests a possible mechanism for the coupling.

摘要

使用一种包含位阻相互作用和内禀偶极子的粗粒、刚性棒模型来研究通过连接体固定在平坦界面上的表面活性剂分子单层。在正则系综中对具有不同程度偶极子强度的一系列高密度构型进行了蒙特卡罗模拟。观察到了熔化转变和倾斜转变,并且考察了转变对表面活性剂分子内禀偶极子的依赖性。模拟结果表明,在高堆积密度下,由于偶极子-偶极子排斥和位阻相互作用,单层处于受挫状态。表面活性剂分子的倾斜增加了偶极子-偶极子吸引力的大小并降低了整体系统能量,但受到位阻排斥的限制。在具有更高偶极子强度的模拟中,发现熔化和倾斜转变是耦合的。这些系统中具有增加的集体倾斜和位置有序的纳米域的形成表明了耦合的可能机制。

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