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首页> 外文期刊>The Journal of Organic Chemistry >Practical Syntheses of Enantiomerically Enriched γ-Lactones and γ-Hydroxy Ketones by the Alkylation of Pseudoephedrine Amides with Epoxides and Their Derivatives
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Practical Syntheses of Enantiomerically Enriched γ-Lactones and γ-Hydroxy Ketones by the Alkylation of Pseudoephedrine Amides with Epoxides and Their Derivatives

机译:伪麻黄碱酰胺与环氧化物及其衍生物烷基化的对映体富集的γ-内酯和γ-羟基酮的实用合成

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摘要

Pseudoephedrine amide enolates are shown to undergo efficient alkylation reactions with epoxides as electrophiles. Reactions with monosubstituted epoxides are subject to stereochemical matching such that the pairing leading to the 1,3-syn diastereomer is a highly selective, synthetically useful process, while the pairing forming the 1,3-anti diasterebmer is not. Reactions with the 1,1-disubstituted epoxide isobutylene oxide are also highly diastereoselective and synthetically useful, but ethylene oxide exhibits poor diastereoselectivity. As an alternative to the use of ethylene oxide, 2-(tert-butyldimethylsilyloxy)ethyl iodide is shown to undergo highly diastereoselective and efficient alkylation reactions with pseudoephedrine amide enolates. Interestingly, epoxides and alkyl halides are found to attack opposite π-faces of pseudoephedrine amide enolates. The products of each of these alkylation reactions are transformed efficiently into γ-lactones by acidic hydrolysis and into methyl ketones by the addition of methyllithium. The methodology described provides useful procedures for the synthesis of enantiomerically enriched γ-lactones and γ-hydroxy ketones.
机译:伪麻黄碱酰胺烯酸酯显示与环氧化物作为亲电子试剂发生有效的烷基化反应。与单取代的环氧化物的反应要进行立体化学匹配,从而导致产生1,3-syn非对映异构体的配对是高度选择性的,合成上有用的过程,而形成1,3-反非对映异构体的配对则不是。与1,1-二取代的环氧化物异丁烯的反应也是高度非对映选择性的并且在合成上是有用的,但是环氧乙烷表现出较差的非对映选择性。作为使用环氧乙烷的替代方法,显示2-(叔丁基二甲基甲硅烷氧基)乙基碘与伪麻黄碱酰胺烯酸酯发生高度非对映选择性和有效的烷基化反应。有趣的是,发现环氧化物和烷基卤化物会侵蚀伪麻黄碱酰胺烯酸酯的相反的π面。这些烷基化反应中的每一个的产物通过酸性水解均有效地转化为γ-内酯,并且通过添加甲基锂而有效地转化为甲基酮。所述方法为合成对映体富集的γ-内酯和γ-羟基酮提供了有用的程序。

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