Highly enantioselective synthesis of glycidic amides using camphor-derived sulfonium salts. Mechanism and applications in synthesis

被引:117
作者
Aggarwal, VK [1 ]
Charmant, JPH [1 ]
Fuentes, D [1 ]
Harvey, JN [1 ]
Hynd, G [1 ]
Ohara, D [1 ]
Picoul, W [1 ]
Robiette, R [1 ]
Vasse, JL [1 ]
Winn, CL [1 ]
机构
[1] Univ Bristol, Sch Chem, Struct Chem Lab, Bristol BS8 1TS, Avon, England
关键词
D O I
10.1021/ja0568345
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
The reactions of a range of amide-stabilized sulfur ylides derived from readily available camphor-derived sulfonium salts for the synthesis of glycidic amides have been studied. Primary, secondary, and tertiary amides were tested, and it was found that the highest enantioselectivities were observed with tertiary amides, which provided glycidic amides in good to excellent yields, exclusive trans selectivity, and excellent enantioselectivities. The reaction was general for aromatic alclehydes, but aliphatic alclehydes gave more variable enantioselectivities. The epoxy amides could be converted cleanly into epoxy ketones by treatment with organolithium reagents. We were also able to effect selective ring opening of the epoxy amides with a variety of nucleophiles, followed by hydrolysis of the amide to yield the corresponding carboxylic acid. This methodology was applied to the total synthesis of the target compound SK&F 104353. A combination of crossover experiments and theoretical calculations has revealed that the rate- and selectivity-determining step is ring closure, not betaine formation as was the case for phenyl-stabilized ylides.
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页码:2105 / 2114
页数:10
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