Reaction-driven surface restructuring and selectivity control in allylic alcohol catalytic aerobic oxidation over Pd
Adam F Lee1, Christine V Ellis, James N Naughton
1Cardiff Catalysis Institute, School of Chemistry, Cardiff University, Cardiff CF10 3AT, UK. leeaf@cardiff.ac.uk
Abstract:
Synchronous, time-resolved DRIFTS/MS/XAS cycling studies of the vapor-phase selective aerobic oxidation of crotyl alcohol over nanoparticulate Pd have revealed surface oxide as the desired catalytically active phase, with dynamic, reaction-induced Pd redox processes controlling selective versus combustion pathways.
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