Oxidation of non-plienolic beta-O-aryl-lignin model dimers catalysed by lignin peroxidase. Comparison with the oxidation induced by potassium 12-tungstocobalt(III)ate

Citation
E. Baciocchi et al., Oxidation of non-plienolic beta-O-aryl-lignin model dimers catalysed by lignin peroxidase. Comparison with the oxidation induced by potassium 12-tungstocobalt(III)ate, J CHEM S P2, (9), 2001, pp. 1506-1511
Citations number
30
Categorie Soggetti
Physical Chemistry/Chemical Physics
Journal title
JOURNAL OF THE CHEMICAL SOCIETY-PERKIN TRANSACTIONS 2
ISSN journal
1472779X → ACNP
Issue
9
Year of publication
2001
Pages
1506 - 1511
Database
ISI
SICI code
1472-779X(200109):9<1506:OONBMD>2.0.ZU;2-Y
Abstract
The H2O2-promoted oxidations of the non-phenolic beta -O-aryl-lignin model dimers 1-(3,4-dimethoxyphenyl)-2-phenoxyethanol (1) and 2-(4-methoxyphenoxy )-1-phenylethanol (2) catalysed by LiP at pH = 4.0 have been studied. The o xidation of 1 mainly leads to the corresponding ketone, indicating that the prevailing reaction of the intermediate radical cation 1(+.) is C alpha -H deprotonation. The oxidation of 2 forms 2-(4-methoxyphenoxy)2-phenylethano l (7, an isomer of 2), 2-phenyl-1,4-dioxaspiro[4.5]deca-6,9-dien-8-one (8) and products coming from the cleavage of the C-C bond gamma to the more ele ctron rich ring. The formation of all these products can be rationalised by assuming that the main reaction of the intermediate 2(+.) is a nucleophili c attack of the alcoholic OH group on the ring bearing the positive charge. This leads to a spirocyclohexadienyl radical; which either is then oxidise d to the dioxaspirodecadienone 8 or undergoes ring opening to give an alkox yl radical from which the isomer of 2 and the C-C bond cleavage products ma y form. Support for this mechanism has been provided by a study of the oxid ation of 4-MeOC6H4OCH2CD2OH and by comparing the results with those obtaine d when the alkoxyl radical 4-MeOC6H4OCH2CD2O . was generated from 4-MeOC(6) H(4)OCH(2)CD(2)OOt-Bu. The oxidation of 1 induced by the genuine one-electr on oxidant potassium 12-tungstocobalt(iii)ate at pH = 4.0 confirms the resu lts obtained with LiP However, under the same conditions, no fragmentation products were observed in the oxidation of 2, probably due to a fast oxidat ion, by potassium 12-tungstocobalt(iii) ate, of the spirocyclohexadienyl ra dical.