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Classical nucleation theory for solute precipitation amended with diffusion and reaction processes near the interface

机译:邻近界面附近的扩散和反应过程的溶质沉淀的古典成核理论

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摘要

During the processes of nucleation and growth of a precipitate cluster from a supersaturated solution, the diffusion flux between the cluster and the solution changes the solute concentration near the cluster-solution interface from its average bulk value. This feature affects the rates of attachment and detachment of solute atoms at the interface, and, therefore, the entire nucleation-growth kinetics is altered. Unless quite obvious, this effect has been ignored in classical nucleation theory. To illustrate the results of this approach, for the case of homogeneous nucleation, we calculate the total solubility and the nucleation rate as functions of two parameters of the model (the reduced interface energy and the inverse second Damkohler number), and we compare these results to the classical ones. One can conclude that discrepancies with classical nucleation theory are great in the diffusion-limited regime, when the rate of bulk diffusion is small compared to the rate of interface reactions, while in the opposite interface-limited case they vanish.
机译:在从超饱和溶液中搅拌和生长的过程中,簇与溶液之间的扩散通量从其平均体值改变簇溶液界面附近的溶质浓度。该特征影响界面处的溶质原子的附着和脱离的速率,因此,改变了整个成核 - 生长动力学。除非非常明显,古典成核理论忽略了这种效果。为了说明这种方法的结果,对于均匀成核的情况,我们计算总溶解度和成核速率,作为模型的两个参数的函数(减少的界面能量和反向第二个Damkohler号码),我们比较这些结果到古典的。可以得出结论,当批量扩散速率与界面反应速率相比,散射速率小的扩散限制的差异很大,而它们在相反的界面限制的情况下。

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