Medicinal Chemistry and Drug Action, Monash Institute of Pharmaceutical Sciences, Monash University, Parkville, Victoria, Australia.
Langmuir. 2011 Sep 20;27(18):11381-93. doi: 10.1021/la2022903. Epub 2011 Aug 26.
The prediction of surfactant phase behavior has applications in a wide range of areas. An accurate modeling of liquid phase behavior can aid our understanding of colloidal process or be used to design phases that respond in a defined way to their environment. In this work, we use molecular dynamics to model the phase behavior of the ternary sodium laurate/sodium oleate/water system and compare the simulation results to experimental data. Simulations were performed with the GROMOS 53A6 united-atom force field and cover the entire ternary phase diagram, producing micellar, hexagonal, and lamellar phases. The aggregate simulation time for the 33 simulations performed during this study is 4.4 μs. We find that the simulations were able to model the experimentally observed liquid phase behavior accurately, showing that the carboxylate and lipid parameters of the 53A6 force field give very good quality results for the in silico prediction of liquid system phase behavior.
表面活性剂相行为的预测在广泛的领域中具有应用。准确地模拟液相行为可以帮助我们理解胶体过程,或者用于设计对环境有特定响应的相。在这项工作中,我们使用分子动力学来模拟十二烷酸钠/油酸钠/水三元体系的相行为,并将模拟结果与实验数据进行比较。模拟使用 GROMOS 53A6 统一原子力场进行,涵盖了整个三元相图,产生胶束、六方和层状相。在本研究中进行的 33 次模拟的总模拟时间为 4.4 μs。我们发现模拟能够准确地模拟实验观察到的液相行为,表明 53A6 力场的羧酸根和脂质参数对于液相体系相行为的计算机预测给出了非常好的结果。