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Transient and steady state CO oxidation kinetics on nanolithographically prepared supported Pd model catalysts:Experiments and simulations

机译:纳米光刻制备的负载Pd模型催化剂上的瞬态和稳态CO氧化动力学:实验和模拟

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Applying molecular-beam methods to a nanolithographically prepared planar Pd/SiO_2 model catalyst,we have performed a detailed study of the kinetics of CO oxidation.The model catalyst was prepared by electron-beam lithography,allowing individual control of particle size and position.The sample was structurally characterized by atomic force microscopy and scanning electron microscopy before and after reaction.In the kinetic experiments,the O-rich and CO-rich regimes were investigated systematically with respect to their transient and steady-state behaviors,both under bistable and monostable reaction conditions.Separate molecular beams were used in order to supply the reactants,allowing individual control over the reactant fluxes.The desorbing CO_2 was detected by both angle-resolved and angle-integrated mass spectrometries.The experimental results were analyzed using different types of microkinetic models,including a detailed reaction-diffusion model,which takes into account the structural parameters of the catalyst as well as scattering of the reactants from the support.The model quantitatively reproduces the results as a function of the reactant fluxes and the surface temperature.Various kinetic effects observed are discussed in detail on the basis of the model.Specifically,it is shown that under conditions of limited oxygen mobility,the switching behavior between the kinetic regimes is largely driven by the surface mobility of CO.
机译:将分子束方法应用于纳米光刻制备的平面Pd / SiO_2模型催化剂上,我们对CO氧化动力学进行了详细研究。通过电子束光刻制备模型催化剂,可以单独控制粒径和位置。在反应之前和之后,通过原子力显微镜和扫描电子显微镜对样品进行结构表征。在动力学实验中,系统地研究了双稳态和单稳态下的富O和富CO态的瞬态和稳态行为。反应条件:使用单独的分子束提供反应物,可单独控制反应物通量。通过角分辨质谱和角积分质谱法检测解吸的CO_2。使用不同类型的微动力学分析实验结果模型,包括详细的反应扩散模型,其中考虑了结构催化剂的参数以及反应物从载体上的散布,该模型定量地再现了反应物通量和表面温度的函数结果。在模型的基础上详细讨论了观察到的各种动力学效应。结果表明,在有限的氧迁移率条件下,动力学模式之间的转换行为很大程度上受CO表面迁移率的驱动。

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