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动理学异质成核理论;核中非均匀密度的影响。

Kinetic theory of heterogeneous nucleation; effect of nonuniform density in the nuclei.

机构信息

Department of Chemical and Biological Engineering, State University of New York at Buffalo, Buffalo, NY 14260, USA.

出版信息

J Colloid Interface Sci. 2011 Mar 1;355(1):259-64. doi: 10.1016/j.jcis.2010.11.080. Epub 2010 Dec 3.

Abstract

The heterogeneous nucleation of a liquid from a vapor in contact with a planar solid surface or a solid surface with cavities is examined on the basis of the kinetic theory of nucleation developed by Nowakowski and Ruckenstein [J. Phys. Chem. 96 (1992) 2313] which is extended to nonuniform fluid density distribution (FDD) in the nucleus. The latter is determined under the assumption that at each moment the FDD in the nucleus is provided by the density functional theory (DFT) for a nanodrop. As a result of this assumption, the theory does not require to consider that the contact angle which the nucleus makes with the solid surface and the density of the nucleus are independent parameters since they are provided by the DFT. For all considered cases, the nucleation rate is higher in the cavities than on a planar surface and increases with increasing strength of the fluid-solid interactions and decreasing cavity radius. The difference is small at high supersaturations (small critical nuclei), but becomes larger at low supersaturations when the critical nucleus has a size comparable with the size of the cavity. The nonuniformity of the FDD in the nucleus decreases the nucleation rate when compared to the uniform FDD.

摘要

基于 Nowakowski 和 Ruckenstein 发展的成核动理论[J. Phys. Chem. 96 (1992) 2313],考察了在与平面固 体表面或具有空穴的固体表面接触的蒸气中液体的不均匀成核。该理论扩展到了核内非均匀流体密度分布 (FDD)。假设在每个时刻,核内的 FDD 由纳米液滴的密度泛函理论 (DFT) 提供,从而确定了后者。由于这一假设,该理论不需要考虑核与固体表面之间的接触角和核的密度是独立的参数,因为它们是由 DFT 提供的。对于所有考虑的情况,空腔中的成核速率都高于平面表面,并且随着流体-固相互作用强度的增加和空腔半径的减小而增加。在高过饱和度(小临界核)时,差异较小,但在低过饱和度时,当临界核的大小与空腔的大小相当时,差异会变大。核内 FDD 的不均匀性与均匀 FDD 相比降低了成核速率。

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