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Surface vacancies concentration of CeO2(111) using kinetic Monte Carlo simulations

机译:使用动力学蒙特卡洛模拟法计算CeO2(111)的表面空位浓度

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Kinetic Monte Carlo simulations (kMC) are useful tools for the investigation of the dynamics of surface properties. Within this method we investigate the oxygen vacancy concentration of CeO2(1 1 1) at ultra high vacuum conditions (UHV). In order to achieve first principles calculations the input for the simulations, i.e. energy barriers for the microscopic processes, we use density functional theory (DFT) results from literature. We investigate the possibility of ad-and desorption of oxygen on ceria as well as the diffusion of oxygen vacancies to and from the subsurface. In particular, we focus on the vacancy surface concentration as well as on the ratio of the number of subsurface vacancies to the number of vacancies at the surface. The comparison of our dynamically obtained results to the experimental findings leads to several issues. In conclusion, we can claim a substantial incompatibility of the experimental results and the dynamical calculation using DFT inputs.
机译:动力学蒙特卡洛模拟(kMC)是研究表面特性动力学的有用工具。在此方法中,我们研究了超高真空条件(UHV)下CeO2(1 1 1)的氧空位浓度。为了实现第一原理计算的模拟输入,即微观过程的能垒,我们使用文献中的密度泛函理论(DFT)结果。我们研究了氧化铈在氧化铈上吸附和脱附的可能性,以及氧空位扩散到地下和从地下扩散的可能性。特别地,我们关注于空位表面浓度以及表面空位数与表面空位数之比。我们动态获得的结果与实验结果的比较导致了几个问题。总之,我们可以断言实验结果和使用DFT输入进行的动力学计算存在很大的不兼容性。

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