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首页> 外文期刊>The Journal of Chemical Physics >A graph-theoretical kinetic Monte Carlo framework for on-lattice chemical kinetics
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A graph-theoretical kinetic Monte Carlo framework for on-lattice chemical kinetics

机译:晶格化学动力学的图论动力学蒙特卡洛框架

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摘要

Existing kinetic Monte Carlo (KMC) frameworks for the simulation of adsorption, desorption, diffusion, and reaction on a lattice often assume that each participating species occupies a single site and represent elementary events involving a maximum of two sites. However, these assumptions may be inadequate, especially in the case of complex chemistries, involving multidentate species or complex coverage and neighboring patterns between several lattice sites. We have developed a novel approach that employs graph-theoretical ideas to overcome these challenges and treat easily complex chemistries. As a benchmark, the Ziff-Gulari-Barshad system is simulated and comparisons of the computational times of the graph-theoretical KMC and a simpler KMC approach are made. Further, to demonstrate the capabilities of our framework, the water-gas shift chemistry on Pt(111) is simulated.
机译:现有的动力学蒙特卡洛(KMC)框架用于模拟在晶格上的吸附,解吸,扩散和反应,通常会假设每个参与的物种都占据一个位点,并代表涉及最多两个位点的基本事件。但是,这些假设可能是不够的,尤其是在复杂化学的情况下,涉及多齿物种或复杂的覆盖范围以及多个晶格位点之间的相邻图案。我们已经开发出一种新颖的方法,该方法采用图论的思想来克服这些挑战并轻松处理复杂的化学物质。作为基准,模拟了Ziff-Gulari-Barshad系统,并比较了图论KMC和更简单的KMC方法的计算时间。此外,为了证明我们框架的功能,对Pt(111)上的水煤气变换化学进行了模拟。

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