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Theoretical analysis of internal fluctuations and bistability in CO oxidation on nanoscale surfaces

机译:纳米级表面CO氧化内部波动和双稳态的理论分析

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The bistable CO oxidation on a nanoscale surface is characterized by a limited number of reacting molecules on the catalytic area.Internal fluctuations due to finite-size effects are studied by the master equation with a Langmuir-Hinshelwood mechanism for CO oxidation.Analytical solutions can be found in a reduced one-component model after the adiabatic elimination of one variable which in our case is the oxygen coverage.It is shown that near the critical point,with decreasing surface area,one cannot distinguish between two macroscopically stable stationary states.This is a consequence of the large fluctuations in the coverage which occur on a fast time scale.Under these conditions,the transition times between the macroscopic states also are no longer separated from the short-time scale of the coverage fluctuations as is the case for large surface areas and far away from the critical point.The corresponding stationary solutions of the probability distribution and the mean first passage times calculated in the reduced model are supported by numerics of the full two-component model.
机译:纳米级表面上的双稳态CO氧化的特征是催化区域上的反应分子数量有限。使用Langmuir-Hinshelwood机理的主方程研究有限尺寸效应引起的内部波动,可以进行解析。在绝热消除一个变量(在我们的情况下为氧气覆盖率)后,在还原的单组分模型中发现。结果表明,在临界点附近,随着表面积的减小,一个不能区分两个宏观稳定的稳态。在这种情况下,宏观状态之间的过渡时间也不再像大表面情况那样与短时间范围的覆盖范围波动分开了。区域和远离临界点的位置简化的模型中计算的时间由完整的两部分模型的数值支持。

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