Title of article :
Reactivity of μ-Peroxo-Bridged Dimeric Vanadate in Bromoperoxidation
Author/Authors :
Rao، نويسنده , , Aparna V.S. and Islam، نويسنده , , Nashreen S. and Ramasarma، نويسنده , , T.، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 1997
Pages :
9
From page :
289
To page :
297
Abstract :
Diglycyl triperoxodivanadate [V2O2(O2)3(Gly H)2(H2O)2], a synthetic compound with μ-peroxo-bridge derived from H2O2and vanadate, oxidized bromide to a bromination-competent intermediate in phosphate buffer and physiological pH. This is in contrast to the requirement of acid medium with H2O2as the oxidant. Addition of its solid to bromide solution instantly produced a 262-nm-absorbing compound that converted phenol red (a trap) to its 592-nm-absorbing bromo-derivative. The high bromination activity was lost on dissolving this compound in water and the solution showed the presence of peroxovanadates (mono and di) and vanadates (V1and oligomeric V10) in51V-NMR spectrum. Of these, diperoxovanadate and vanadate together supported slow bromination activity by a second set of reactions including bromide-assisted reductive formation of vanadyl. Bromination activity dependent on vanadyl was sensitive to oxidation by excess H2O2and to complexation by EDTA, whereas that of triperoxodivanadate was relatively insensitive. Vanadyl and diperoxovanadate are capable of forming a μ-peroxo-bridged complex that is essentially similar to the synthetic vanadate dimer used in the present experiments. It appears that a μ-peroxo-intermediate is the proximal oxidant of bromide in vanadium-catalyzed bromoperoxidation.
Keywords :
triperoxodivanadate , ?-peroxovanadate , vanadium catalysis , bromoperoxidation
Journal title :
Archives of Biochemistry and Biophysics
Serial Year :
1997
Journal title :
Archives of Biochemistry and Biophysics
Record number :
1609107
Link To Document :
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