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Theory of bulk,surface and interface phase transition kinetics in thin films

机译:薄膜的本体,表面和界面相变动力学理论

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We report a theoretical study of phase transition kinetics in confined two-dimensional systems,motivated by recent experimental results on the amorphous-to-crystalline transition in supported,thin amorphous water films [E.H.G.Backus,M.L.Grecea,A.W.Kleyn,and M.Bonn,Phys.Rev.Lett,(to be published)].We generalize and extend existing theories to simultaneously describe the converted (crystalline) fractions in the bulk,at the sample-vacuum surface,and at the sample-support interface as a function of time.The general approach presented here results in expressions for the time-dependent converted bulk,surface,and interface fractions,for arbitrary desorption rate from the thin film,nucleation and growth rates and also includes finite nucleation grain size.The converted bulk,surface,and interface fractions are calculated for nucleation of the new phase occurring (i) in the bulk,(ii) at the support-sample interface,and (iii) at the sample surface (sample-vacuum interface),resulting in nine expressions.The results demonstrate the advantage of monitoring bulk,surface and interface fractions simultaneously to make definite statements regarding the location of the nucleation,and to reliably determine the values of the relevant crystallization parameters.
机译:我们报告了受限二维系统中相变动力学的理论研究,其受最近的实验结果影响,即在负载的,薄的非晶水膜中[EHGBackus,MLGrecea,AWKleyn和M.Bonn ,Phys.Rev.Lett,(待发表)]。我们对现有理论进行了概括和扩展,以同时描述块体,样品-真空表面和样品-支持物界面上的转化(结晶)级分此处介绍的一般方法可得出随时间变化的转化体积,表面和界面分数的表达式,表示薄膜的任意解吸速率,成核速率和生长速率,还包括有限的成核晶粒度。计算表面相和界面分数,以计算新相的成核作用(i)在主体中,(ii)在支撑物-样品界面处,和(iii)在样品表面(样品-真空界面)处,结果为9结果证明了同时监测体积,表面和界面分数的优点,可以就成核的位置做出明确的陈述,并可靠地确定相关结晶参数的值。

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