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Theoretical investigation of the influence of reaction and diffusion kinetics upon thin-film reactive diffusion

机译:反应和扩散动力学对薄膜反应性扩散影响的理论研究

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Atomistic kinetic Monte Carlo simulations, considering the thermodynamic model of the nonregular solid solution on a rigid fcc lattice and using the first-neighbor atomic pair interaction Ising model, were performed to investigate the influence of reaction and diffusion kinetics on thin-film reactive diffusion with a semi-infinite substrate. The simulations show that compound bulk energies have no effect on the phase sequence of appearance during sequential phase formation. However, a diffusion asymmetry between the elements composing the solid solution has a strong effect on sequential phase formation. Diffusion asymmetry increases the critical thickness of the simultaneous-to-sequential phase formation transition, modifies the phase formation sequence, and controls which phase is the first to form. Asymmetrical diffusion can promote transient phase formation and can prevent some phases of the bulk phase diagram from forming. In addition, it influences the thicknesses of phases and their lifetimes during thin-film reactive diffusion. Consequently, the control of atom diffusion during reactive diffusion, for example, thanks to the controlled introduction of impurities, should allow the phase formation sequence of a given binary system to be modified.
机译:考虑刚性fcc晶格上非规则固溶体的热力学模型并使用第一邻居原子对相互作用伊辛模型进行原子动力学蒙特卡洛模拟,以研究反应和扩散动力学对薄膜反应扩散的影响。半无限基板。仿真表明,在顺序相形成过程中,复合体能对相的出现顺序没有影响。但是,组成固溶体的元素之间的扩散不对称性对顺序相的形成有很大的影响。扩散不对称性增加了同时相序到相序过渡的临界厚度,修改了相序,并控制了第一个相。不对称扩散可以促进瞬态相的形成,并可以防止体相图的某些相形成。另外,它会影响薄膜反应性扩散期间的相厚度及其寿命。因此,例如,由于杂质的受控引入,在反应性扩散过程中对原子扩散的控制应允许修改给定二元体系的相形成顺序。

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