Abstract
The preparation of 3-hydroxymethyl-1-tetradecylpyridinium bromide and its use
as a catalyst of nucleophilic aromatic substitution and also amide hydrolysis
are reported. It was found that the hydroxydehalogenation of nitro-activated
aryl halides was much faster in these micelles than in the presence of
cetyl(2-hydroxyethyl)dimethylammonium bromide. It was concluded that the
increased catalysis of nucleophilic aromatic substitution by this micelle was
due to a faster decomposition of the aryl micellar ether which must occur
before the phenolate product is released. No such difference in the two
micelles was found for amide or thioamide hydrolysis since in these reactions
the product amine is produced in the first step of the reaction and
decomposition of the acylated micelle is not required in the rate-determining
step of the reaction.
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2 articles.
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