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On the propagation rate of the chemical waves observed during the course of CO oxidation on a Ag/Pt(110) composite surface

机译:On the propagation rate of the chemical waves observed during the course of CO oxidation on a ag/pt(110) composite surface

摘要

We have analyzed the propagation rate of the chemical waves observed during the course of CO oxidation on a Ag/Pt(I 10) composite surface that were reported in our previous papers [Surf Interface Anal. 2001, 32, 179; J. Phys. Chem. B 2002, 106, 5645]. In all cases, the propagation rate v can be adequately fitted as v = v(0) + D-0/d, in which v(0) and D-0 are constants, and d is the distance between the reaction front of the chemical wave and the boundary from which the chemical wave originates. We propose that the surface species responsible for the formation of the chemical wave comes from two paths: the adsorption of molecules in the gas phase on the surface and the migration from the adjacent surface with different catalytic activity. v(0) corresponds to the contribution from the surface species due to the adsorption, and D-0/d to that of the surface species that migrates from the adjacent surface. The rate equation clearly suggests that the observed chemical wave results from the coupling between adjacent surfaces with different catalytic activities during the course of heterogeneous catalysis. These results, together with our previous reports, provide a good fundamental understanding of spillover, an important phenomenon in heterogeneous catalysis.
机译:我们已经分析了在以前的论文[Surf Interface Anal。 2001,32,179; J.物理化学B 2002,106,5645]。在所有情况下,传播速率v都可以适当地拟合为v = v(0)+ D-0 / d,其中v(0)和D-0是常数,而d是反应的反应前沿之间的距离。化学波和化学波的起源边界。我们认为,负责化学波形成的表面物质来自两个路径:气相中分子在表面上的吸附以及具有不同催化活性的相邻表面的迁移。 v(0)对应于表面物质由于吸附而产生的贡献,D-0 / d对应于从相邻表面迁移的表面物质的贡献。速率方程清楚地表明,在非均相催化过程中,观察到的化学波是由具有不同催化活性的相邻表面之间的耦合产生的。这些结果以及我们以前的报告提供了对溢出的良好基础知识,溢出是多相催化中的重要现象。

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    Huang WX; Bao XH;

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  • 年度 2004
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