Premium
Synthesis of Functionalized Carbamates through a Palladium‐Catalyzed Reductive Carbonylation of Substituted Nitrobenzenes
Author(s) -
Wehman Petra,
Borst Leo,
Kamer Paul C. J.,
Leeuwen Piet W. N. M. Van
Publication year - 1997
Publication title -
chemische berichte
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.667
H-Index - 136
eISSN - 1099-0682
pISSN - 0009-2940
DOI - 10.1002/cber.19971300104
Subject(s) - chemistry , catalysis , carbonylation , nitro , selectivity , steric effects , trifluoromethanesulfonate , palladium , medicinal chemistry , aniline , reductive elimination , oxidizing agent , nitrobenzene , combinatorial chemistry , organic chemistry , carbon monoxide , alkyl
The palladium‐catalyzed reductive carbonylation of ortho and para ‐substituted nitrobenzenes has proven to be an attractive route for the synthesis of functionalized carbamates. For the Pd(1, 10‐phenanthroline) 2 (triflate) 2 catalyst system, the scope of the reaction has been studied. Substrates with electron‐donating substituents at the para position were found to decrease the catalytic activity, most probably as a result of their relatively low oxidizing capacity. the selectivity towards the desired carbamate, however, was increased for these substrates. Under the influence of electron‐withdrawing substituents the azoxybenzene and azobenzene derivatives became important side products. Introduction of large steric hindrance at the ortho position of the nitro substrates gave rise to an interesting side reaction, viz. methoxylation of the aromatic ring. The methoxylation reaction appeared to occur on an intermediate species in the catalytic cycle. Several functionalities have shown to be resistant to the reaction conditions required for the conversion ot the nitro group. Especially with 4‐nitrobenzoic acid, an extremely high activity and selectivity was found, thus yielding a very convenient synthesis for N ‐protected amines containing carboxylic acid function.