Wedekind Jan, Wölk Judith, Reguera David, Strey Reinhard
Institut für Physikalische Chemie, Universität zu Köln, Luxemburger Str. 116, D-50939 Köln, Germany.
J Chem Phys. 2007 Oct 21;127(15):154515. doi: 10.1063/1.2784122.
We report six nucleation rate isotherms of vapor-liquid nucleation of Lennard-Jones argon from molecular dynamics simulations. The isotherms span three orders of magnitude in nucleation rates, 10(23)<J/cm(-3) s(-1)<10(26), in a temperature range of 45-70 K below the triple point. The rates are very accurately determined using the concept of mean first-passage times, which also allows a determination of the critical cluster size directly from the kinetics. The results deviate from classical nucleation theory (CNT) by two to seven orders of magnitude, which nevertheless is much smaller than the more than 20 orders of magnitude encountered in recent experiments in a similar temperature range. The extended modified liquid drop-dynamical nucleation theory (EMLD-DNT) shows excellent agreement with the simulation results with deviations of less than one order of magnitude over the entire studied temperature range. Both simulation and experiment confirm the same incorrect temperature trend of CNT, which seems to be corrected in the EMLD-DNT model. However, the predictions of CNT for the critical cluster sizes agree well with the results obtained from the simulations using the nucleation theorem, supporting the notion that CNT successfully estimates the location of the transition state but severely fails to predict its height.
我们通过分子动力学模拟报告了 Lennard-Jones 氩气气液成核的六个成核速率等温线。这些等温线在低于三相点 45 - 70 K 的温度范围内,成核速率跨越三个数量级,即 10(23)<J/cm(-3) s(-1)<10(26)。使用平均首次通过时间的概念非常精确地确定了速率,这也使得能够直接从动力学确定临界团簇尺寸。结果与经典成核理论(CNT)的偏差为两到七个数量级,不过这比最近在类似温度范围内实验中遇到的超过 20 个数量级要小得多。扩展的修正液滴 - 动力学成核理论(EMLD - DNT)与模拟结果显示出极好的一致性,在整个研究温度范围内偏差小于一个数量级。模拟和实验都证实了 CNT 相同的错误温度趋势,而在 EMLD - DNT 模型中似乎得到了修正。然而,CNT 对临界团簇尺寸的预测与使用成核定理从模拟中获得的结果吻合得很好,这支持了 CNT 成功估计过渡态位置但严重无法预测其高度的观点。