Gy. Cao et al., Dynamics on individual reaction sites in steady-state carbon monoxide oxidation on stepped platinum(113), J PHYS CH B, 103(16), 1999, pp. 3235-3241
The reaction kinetics and dynamics of carbon monoxide oxidation on a steppe
d Pt(113) = (s)2(111) x (001) surface were studied by angle-resolved kineti
c and velocity measurements at the steady state. CO2 desorption sharply col
limated nearly along either the (111) site normal or the (001) site normal.
Only two reaction sites, the (111) and (001) sites, were operative. The tr
anslational energy of CO2 was characteristic of each site throughout a site
switching. At surface temperatures above 520 K in the active region, where
the reaction was first order in CO, the preference of the (111) site was s
uppressed with increasing CO pressure. Below 520 K, on the other hand, site
switching slowly took place under limited conditions, in which both sites
considerably contributed to the reaction and a meta-stable adsorbed phase s
eemed to be formed. The preference for the (111) site over the (001) site w
as caused by the former's higher reactivity of oxygen.