Panczyk Tomasz
Institute of Catalysis and Surface Chemistry, Polish Academy of Sciences, ul. Niezapominajek 8, 30239, Krakow, Poland.
Phys Chem Chem Phys. 2006 Aug 28;8(32):3782-95. doi: 10.1039/b602360f. Epub 2006 Jul 7.
The statistical rate theory (SRT) fundamental kinetic equation for the Langmuir model of adsorption reveals some features which are difficult to understand. These are the infinitely high adsorption rate for zero coverage limit, infinitely high desorption rate at full saturation of the surface and dependence of the desorption rate on the adsorbate pressure. These features do not allow for a correct formulation of such important physical parameters as sticking and initial sticking probabilities. In this work these peculiar features of the fundamental SRT kinetic equation are discussed and explained. It is shown that the non-physical behavior of the SRT kinetic equation follows from neglecting possible changes of adsorbate concentration near the adsorbing surface. A simple model accounting for the changes of adsorbate concentration close to the adsorbing surface is discussed. As a result, it was shown that application of even such a simple model leads to fully physical behavior of the SRT kinetic equation for the Langmuir model of adsorption. The model is used to build up equations describing the kinetics of adsorption/desorption of carbon monoxide on the energetically heterogeneous rhodium surface. The values of the parameters in these equations were determined from the analysis of equilibrium adsorption isotherms and from the description of experimental conditions. One additional parameter (having well defined limiting values) had to be adjusted in order to satisfactorily reproduce kinetic data. The experimental data used in this work were taken from the article by Yamada and Tamaru (T. Yamada and K. Tamaru, Surf. Sci., 1984, 138, L155).
用于朗缪尔吸附模型的统计速率理论(SRT)基本动力学方程揭示了一些难以理解的特征。这些特征包括在零覆盖度极限下无限高的吸附速率、表面完全饱和时无限高的解吸速率以及解吸速率对吸附质压力的依赖性。这些特征使得诸如粘附概率和初始粘附概率等重要物理参数无法得到正确表述。在这项工作中,对SRT基本动力学方程的这些特殊特征进行了讨论和解释。结果表明,SRT动力学方程的非物理行为源于忽略了吸附表面附近吸附质浓度的可能变化。讨论了一个考虑吸附表面附近吸附质浓度变化的简单模型。结果表明,即使应用这样一个简单模型也会使朗缪尔吸附模型的SRT动力学方程呈现完全符合物理的行为。该模型用于建立描述一氧化碳在能量不均匀铑表面上吸附/解吸动力学的方程。这些方程中的参数值通过对平衡吸附等温线的分析和对实验条件的描述来确定。为了令人满意地重现动力学数据,必须调整一个额外的参数(具有明确的极限值)。这项工作中使用的实验数据取自山田和玉丸的文章(T. Yamada和K. Tamaru,《表面科学》,1984年,第138卷,L155)。