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首页> 外文期刊>The Journal of Chemical Physics >A density functional view of transition state theory:Simulating the rates at which Si adatoms hop on a silicon surface.
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A density functional view of transition state theory:Simulating the rates at which Si adatoms hop on a silicon surface.

机译:过渡态理论的密度泛函观点:模拟硅原子在硅表面跳跃的速率。

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摘要

Density functional theory is used to give an operational definition for the "free energy surface" on which Si adatoms move over a (100) silicaon surface.Molecular dynamics simulations using the empirical Stilinger-Weber potential are used to numerically evaluate free energy surfaces near binding sites and along the important hopping paths.Transition state theory is used to deduce binding sites and along the important hopping paths.Trnasition state theory is used to deduce hopping rates at Tapprox 500 and 1000K from these free energy surfaces for the basic steps responsible for "surface diffusion." The difference in the activation free energies at these temperatures and the T=0 barrier herights is emphasized.
机译:密度泛函理论用于为硅原子在(100)硅酮表面上移动的“自由能表面”提供操作定义。使用经验Stilinger-Weber势的分子动力学模拟对结合附近的自由能表面进行数值评估过渡状态理论用于推导结合位点和重要的跳跃路径。过渡状态理论用于从这些自由能面推导Tapprox 500和1000K处的跳跃速率,这些基本步骤负责“表面扩散。”强调了在这些温度和T = 0势垒高度之间的激活自由能的差异。

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