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首页> 外文期刊>The Journal of Chemical Physics >Nucleation and interfacial adsorption in ternary systems
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Nucleation and interfacial adsorption in ternary systems

机译:三元体系中的成核和界面吸附

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Nucleation is studied in incompressible ternary fluids by examining the topology of the overall landscape of the energy surface. Minimum free energy paths for nucleation (MFEPs) of a single nucleus in an infinite matrix are computed with the string method in the framework of the continuum theory of nucleation for the regular solution. Properties of the critical nucleus are compared with the predictions of the classical nucleation theory. MFEPs are found to exhibit complex nucleation pathways with non-monotonic variations of compositions in the interfacial region, specifically adsorption of a component. In the symmetric regular solution, the minority component is found to segregate at the interface during nucleation with a concomitant depletion of the nucleus core, resulting in unpredicted partition of the non-selective component. Despite increasing the gradient energy, such inhomogeneity in composition is shown to lower the nucleation barrier. (C) 2015 AIP Publishing LLC.
机译:通过检查能量表面整体景观的拓扑结构,研究了不可压缩三元流体中的成核作用。在正则解的连续性成核理论的框架内,通过弦法计算了无限矩阵中单个核的最小成核自由能路径(MFEP)。临界核的性质与经典成核理论的预测进行了比较。发现MFEP表现出复杂的成核途径,界面区域的组成具有非单调变化,特别是组分的吸附。在对称正则解中,发现少数组分在成核过程中在界面处偏析,伴随着核核心的耗尽,导致非选择性组分的不可预测的分配。尽管增加了梯度能量,但这种组成上的不均匀性显示出降低了成核势垒。 (C)2015 AIP Publishing LLC。

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