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多组分成核:成核功的热力学一致描述

Multicomponent nucleation: thermodynamically consistent description of the nucleation work.

作者信息

Kashchiev Dimo

机构信息

Institute of Physical Chemistry, Bulgarian Academy of Sciences, ul. Acad. G Bonchev 11, Sofia 1113.

出版信息

J Chem Phys. 2004 Feb 22;120(8):3749-58. doi: 10.1063/1.1643711.

Abstract

A thermodynamically consistent formula is derived for the nucleation work in multicomponent homogeneous nucleation. The derivation relies on the conservative dividing surface which defines the nucleus as having specific surface energy equal to the specific surface energy sigma0 of the interface between the macroscopically large new and old phases at coexistence. Expressions are given for the radius of the nucleus defined by the conservative dividing surface and by the surface of tension. As a side result, the curvature dependence of the surface tension sigmaT of the nucleus defined by the surface of tension is also determined. The analysis is valid for nuclei of any size, i.e., for nucleation in the whole range of conditions between the binodal and the spinodal of the metastable old phase provided the inequality sigmaT < or = sigma0 is satisfied. It is found that under the conditions of validity of the analysis the nucleation rate is higher than the nucleation rate given by the classical nucleation theory. The general results are applied to nucleation of unary liquids or solids in binary gaseous, liquid or solid mixtures.

摘要

推导了多组分均相成核中形核功的热力学自洽公式。该推导依赖于保守分界面,该分界面将核定义为具有特定表面能,该特定表面能等于宏观大的新相和旧相共存时界面的特定表面能σ0。给出了由保守分界面和表面张力定义的核半径的表达式。作为附带结果,还确定了由表面张力定义的核的表面张力σT的曲率依赖性。该分析对于任何尺寸的核都是有效的,即对于亚稳旧相的双节线和旋节线之间的整个条件范围内的成核,只要满足不等式σT≤σ0即可。结果发现,在分析有效的条件下,成核速率高于经典成核理论给出的成核速率。将一般结果应用于二元气态、液态或固态混合物中一元液体或固体的成核。

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