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Electric field induced oscillations in the catalytic water production on rhodium: A theoretical analysis

机译:电场在铑催化水生产中引起的振荡:理论分析

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摘要

Methods are developed to describe catalytic reactions on multi-facetted surfaces in high electric fields in the conditions of field emission microscopy. These methods are applied to the hydrogen-oxygen-rhodium system for which a mean-field kinetic model is established. This model is shown to reproduce not only the nonequilibrium regimes of bistability and oscillations and their nanopatterns, but also the temperature-programmed desorption spectra of hydrogen and oxygen on rhodium, as well as the equilibrium phase diagram of oxygen on rhodium with the transition to the trilayer surface oxide ORhO. The dependence of the kinetic constants on the surface orientation of the facets is taken into account by expanding them in kubic harmonics suitable for the fcc rhodium crystal. The electric field modifies the gas pressure as well as the activation energies of the different kinetic processes. The tip of the field emission microscope is shown to behave as a nanoreactor.
机译:在场发射显微镜条件下,开发了描述高电场多面表面催化反应的方法。这些方法应用于建立了平均场动力学模型的氢-氧-铑体系。该模型不仅可以再现双稳态和振荡的非平衡态及其纳米模式,还可以再现铑下氢和氧的程序升温脱附光谱,以及铑向氧过渡时在铑上的平衡相图。三层表面氧化物ORhO。通过将其扩展为适合于fcc铑晶体的kubic谐波,可以考虑到动力学常数对刻面表面取向的依赖性。电场会改变气压以及不同动力学过程的活化能。场发射显微镜的尖端显示为可充当纳米反应器。

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