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Effect of uniform electric field on homogeneous vapor–liquid nucleation and phase equilibria. II. Extended simple point charge model water

机译:均匀电场对均匀汽液成核和相平衡的影响。 II。扩展简单点电荷模型水

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摘要

The effects of a uniform electric field on homogeneous vapor–liquid nucleation of the extended simple point charge (SPC/E) model water have been simulated. A grand canonical Monte Carlo simulation approach [I. Kusaka et al., J. Chem. Phys. 108, 3416 (1998)], which directly gives the equilibrium distribution of physical clusters, is employed to calculate the formation free energy of the SPC/E water cluster. The results show that the formation free energy is lowered in a uniform field if the chemical potential of the supersaturated vapor is fixed; in this case, the field enhances the rate of nucleation. However, if the vapor supersaturation or pressure is fixed, the formation free energy increases with the field, that is, the field reduces the rate of nucleation. This conclusion is consistent with an earlier study using the i/v cluster theory for weakly dipolar Stockmayer fluid in a uniform field (Part I). A byproduct of this work is the vapor–liquid coexistence (bimodal) of the SPC/E water in the presence of the electric field.
机译:已经模拟了均匀电场对均匀蒸汽 - 液体成核的效果已经模拟了延长简单点电荷(SPC / E)模型水的效果。一个大规范蒙特卡罗模拟方法[I. Kusaka等人。,J.Chem。物理。直接给出物理簇的平衡分布的108,3416(1998)是用于计算SPC / E水簇的形成自由能。结果表明,如果固定蒸汽的化学电位固定,则在均匀场中,在均匀场中降低了地层的能量;在这种情况下,该领域增强了成核的速率。然而,如果蒸汽过饱和或压力是固定的,则与场的形成自由能量增加,即该场降低了成核速率。该结论与使用I / V集群理论在统一场中的弱偶极母体流体(第I部分)中的弱偶极母液中的早期研究一致。该工作的副产物是电场存在下SPC / E水的蒸汽液体共存(双峰)。

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