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使用2-酰基-4-氨基吡啶类酰基转移催化剂对酯进行羟基导向的甲醇解反应时选择性增强:以酮作为结合位点。

Enhanced selectivities for the hydroxyl-directed methanolysis of esters using the 2-acyl-4-aminopyridine class of acyl transfer catalysts: ketones as binding sites.

作者信息

Sammakia T, Hurley T B

机构信息

Department of Chemistry and Biochemistry, University of Colorado, Boulder, Colorado 80309-0215, USA.

出版信息

J Org Chem. 2000 Feb 25;65(4):974-8. doi: 10.1021/jo991202k.

DOI:10.1021/jo991202k
PMID:10814042
Abstract

In this paper we describe the preparation of a series of 2-acyl-4-aminopyridines, and their use as catalysts for the hydroxyl-directed methanolysis of alpha-hydroxy esters in preference to alpha-methoxy esters. Hydroxyl-direction with these catalysts, which contain ketones at the 2-position of the pyridine, is achieved by reversible addition of the alcohol of the hydroxy ester to the ketone to provide the corresponding hemiketal. Their activity is compared to that of the previously described catalyst 2-formyl-4-pyrrolidinopyridine (FPP), which contains an aldehyde at the 2-position of the pyridine. The catalysts which contain ketones at the 2-position range in reactivity from 10 times slower to slightly faster than FPP, and certain of these are much more selective for the methanolysis of hydroxy esters than FPP. This increase in selectivity is ascribed to a decrease in the rate of the nondirected methanolysis reaction with the ketone-derived catalysts. The evidence suggests that the nondirected reaction does not proceed by an intermolecular general base mechanism, but rather via a nucleophilic catalysis mechanism in which the hydroxyl group of the hemiacetal formed upon addition of methanol to the aldehyde of FPP acts as the nucleophile. Since the hydroxyl group derived from a hemiketal is more hindered and less nucleophilic than that derived from a hemiacetal, the nondirected reaction is much slower for the catalysts containing ketones as binding sites.

摘要

在本文中,我们描述了一系列2-酰基-4-氨基吡啶的制备方法,以及它们作为催化剂用于优先使α-羟基酯而非α-甲氧基酯进行羟基导向的甲醇解反应。这些在吡啶2位含有酮的催化剂实现羟基导向的方式是,羟基酯的醇可逆地加成到酮上,形成相应的半缩酮。将它们的活性与先前描述的在吡啶2位含有醛的催化剂2-甲酰基-4-吡咯烷吡啶(FPP)的活性进行了比较。在吡啶2位含有酮的催化剂的反应活性范围是比FPP慢10倍到略快于FPP,并且其中某些催化剂对羟基酯甲醇解的选择性比FPP高得多。选择性的这种提高归因于与酮衍生的催化剂发生的非导向甲醇解反应速率的降低。证据表明,非导向反应不是通过分子间通用碱机制进行的,而是通过亲核催化机制进行的,在该机制中,甲醇加成到FPP的醛上形成的半缩醛的羟基充当亲核试剂。由于半缩酮衍生的羟基比半缩醛衍生的羟基位阻更大且亲核性更弱,因此对于以酮作为结合位点的催化剂,非导向反应要慢得多。

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