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Surface reconstruction in reactive dynamics: A kinetic Monte Carlo approach

机译:反应动力学中的表面重建:动力学蒙特卡洛方法

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The oscillatory CO oxidation reaction on the restructuring surface of Pt( 100) is studied through a mesoscopic kinetic Monte Carlo (KMC) approach. The present model is an extension of the standard ZGB model with specific attention to the emergence of oscillations in surface reactions. A square and a purely hexagonal lattice are used as substrates on which the CO oxidation reaction steps take place. The dynamics of the reaction on the two substrates exhibit the ZGB kinetic phase transitions, at different kinetic parameter values for each substrate. Surface reconstruction is modelled through switching between the two lattice types. Oscillations are produced in those parametric areas where the steady state concentrations on the two substrates are considerably different. The parametric area where notable oscillations are observed is narrow, but is greatly enhanced when different sticking coefficients of oxygen are taken into account. CO diffusion introduced microscopically to the model on the hexagonal lattice shifts the kinetic transition points and increases considerably the time needed to reach the steady state.
机译:通过介观动力学蒙特卡洛(KMC)方法研究了Pt(100)的重组表面上的振荡CO氧化反应。本模型是标准ZGB模型的扩展,特别注意表面反应中振荡的出现。正方形和纯六边形的晶格用作在其上进行CO氧化反应步骤的基质。在两种底物上的反应动力学表现出ZGB动力学相变,每个底物的动力学参数值不同。通过在两种晶格类型之间切换来模拟表面重建。在两个基板上的稳态浓度明显不同的那些参数区域中会产生振荡。观察到明显振荡的参量区域较窄,但当考虑到不同的氧吸附系数时,参量区域将大大增强。在微观上引入六角形晶格模型的CO扩散会改变动力学转变点,并显着增加达到稳态所需的时间。

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