期刊:Journal of Physics D [IOP Publishing] 日期:2021-03-02卷期号:54 (20): 204005-204005被引量:6
标识
DOI:10.1088/1361-6463/abe486
摘要
Abstract Reduction of oxidized Rh catalysts under carbon monoxide (CO) exposure and reaction conditions were studied by using ambient-pressure x-ray photoelectron spectroscopy. First, Rh powders pressed into a pellet were deeply oxidized and the reduction process under 100 mTorr CO environment was monitored in situ at different temperatures. The oxidized Rh surfaces are composed of Rh 2 O 3 and RhO 2 , the latter of which is more segregated near the surface. Both oxide species are reduced simultaneously to the metallic state; kinetic analyses indicate that the activation energy of the reduction of the Rh oxides is 1.68 eV, which is a little larger than those for Pd oxides, probably due to a stronger Rh–O interaction. Reduction of oxidized Rh nano-particles deposited on SiO 2 under two reaction conditions (CO + O 2 and CO + NO + O 2 ) was observed with increasing temperature. It was found that the reduction temperature shifts to the higher temperature in the presence of NO, even though the S -factors are almost the same. The NO molecule more strongly prevents the reduction of oxidized Rh catalyst compared to O 2 .