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The study of the active surface for CO oxidation over supported Pd catalysts 被引量:1

The study of the active surface for CO oxidation over supported Pd catalysts
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摘要 CO oxidation was investigated on various powder oxide supported Pd catalysts by temperature-programined reaction. The pre-reduced catalysts show significantly higher activities than the pre-oxidized ones. Model studies were performed to better understand the oxidation state, reactivities and stabilities of partially oxidized Pd surfaces under CO oxidation reaction condi tions using an in situ infrared reflection absorption spectrometer (IRAS). Three O/Pd(100) model surfaces, chemisorbed oxygen covered surface, surface oxide and bulk-like surface oxide, were prepared and characterized by low-energy electron diffraction (LEED) and Auger electron spectroscopy (AES). The present work demonstrates that the oxidized palladium surface is less active for CO oxidation than the metallic surface, and is unstable under the reaction conditions with sufficient CO. CO oxidation was investigated on various powder oxide supported Pd catalysts by temperature-programmed reaction.The pre-reduced catalysts show significantly higher activities than the pre-oxidized ones.Model studies were performed to better understand the oxidation state,reactivities and stabilities of partially oxidized Pd surfaces under CO oxidation reaction conditions using an in situ infrared reflection absorption spectrometer(IRAS).Three O/Pd(100)model surfaces,chemisorbed oxygen covered surface,surface oxide and bulk-like surface oxide,were prepared and characterized by low-energy electron diffraction(LEED)and Auger electron spectroscopy(AES).The present work demonstrates that the oxidized palladium surface is less active for CO oxidation than the metallic surface,and is unstable under the reaction conditions with sufficient CO.
出处 《Science China Chemistry》 SCIE EI CAS CSCD 2015年第1期174-179,共6页 中国科学(化学英文版)
基金 supported by the National Basic Research Program of China(2010CB732303,2013CB933102) the Major Project of Chinese Ministry of Education(309019) the National Natural Science Foundation of China(21033006,21073149,21273178) the Program for Changjiang Scholars and Innovative Research Team in University(IRT1036) the Ph.D Programs foundation of Chinese Ministry of Education(20110121110010)
关键词 CO oxidation in-situ IRAS temperature-programmed reaction PALLADIUM catalytically active surface Pd催化剂 CO氧化 活性表面 过负载 表面氧化物 俄歇电子能谱 氧化反应 IRAS
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