Fern Jared T, Keffer David J, Steele William V
Chemical Engineering Department, 327 Dougherty Engineering Bilding, 1512 Middle Drive, University of Tennessee, Knoxville, Tennessee 37996-2200, USA.
J Phys Chem B. 2007 Nov 22;111(46):13278-86. doi: 10.1021/jp075414u. Epub 2007 Nov 1.
Explicit atom simulations of ethanol were performed by molecular dynamics using the OPLS-AA potential. The phase densities were determined self-consistently by comparing the distribution of Voronoi volumes from two-phase and single-phase simulations. This is the first demonstration of the use of Voronoi tessellation in two-phase molecular dynamics simulation of polyatomic fluids. This technique removes all arbitrary determination of the phase diagram by using single-phase simulations to self-consistently validate the probability distribution of Voronoi volumes of the liquid and vapor phases extracted from the two-phase molecular dynamics simulations. Properties from the two phase simulations include critical temperature, critical density, critical pressure, phase diagram, surface tension, and molecule orientation at the interface. The simulations were performed from 375 to 472 K. Also investigated were the vapor pressure and hydrogen bonding along the two phase envelope. The phase envelope agrees extremely well with literature values from GEMC at lower temperatures. The combined use of two-phase molecular dynamics simulation and Voronoi tessellation allows us to extend the phase diagram toward the critical point.
使用OPLS - AA势通过分子动力学对乙醇进行了显式原子模拟。通过比较两相和单相模拟中Voronoi体积的分布自洽地确定相密度。这是Voronoi镶嵌在多原子流体两相分子动力学模拟中应用的首次展示。该技术通过使用单相模拟自洽地验证从两相分子动力学模拟中提取的液相和气相Voronoi体积的概率分布,消除了相图的所有任意确定。两相模拟的性质包括临界温度、临界密度、临界压力、相图、表面张力以及界面处的分子取向。模拟在375至472 K的温度范围内进行。还研究了沿两相包络线的蒸气压和氢键。在较低温度下,该相包络线与GEMC的文献值非常吻合。两相分子动力学模拟和Voronoi镶嵌的联合使用使我们能够将相图扩展到临界点。