A novel complex oxide of Cu-Bi-V-O was hydrothermally synthesized in a Bi2O
3-V2O5-CuO-H2O system, and it was found that this compound is catalytically
active for phenol hydroxylation by H2O2, which is comparable to TS-1. Reac
tion temperature, solvent, the molar ratio of phenol to H2O2, reaction time
, catalyst amount, and method of H2O2 addition were found to be major facto
rs for phenol conversion and product selectivity. Furthermore, electron spi
n resonance (ESR) was used to characterize the reaction intermediates, two
species assigned to hydroxyl radicals and hydroperoxyl radicals were observ
ed, and the hydroxyl radicals are proposed to play important roles in the f
ormation of products in catalytic phenol hydroxylation by H2O2. (C) 2000 Ac
ademic Press.