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首页> 外文期刊>European journal of organic chemistry >Asymmetric Synthesis of #beta#-Lactams by Staudinger Ketene-Imine Cycloaddition Reaction
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Asymmetric Synthesis of #beta#-Lactams by Staudinger Ketene-Imine Cycloaddition Reaction

机译:Staudinger丁烯-亚胺环加成反应不对称合成#beta#-内酰胺

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摘要

[2 + 2] Cycloaddition reactions between ketenes, bearing amino-, oxy-, or halo- groups, and imines are recognized as being amongst the most important and direct routes to #beta#-lactams. Alkyl-substituted ketenes also furnished the corresponding #beta#-lactams upon reaction with activated imines (iminoesters). In general, ketenes are generated from the appropriate acid chloride and a tertiary amine. The major or sole product of the cycloaddition is usually the cis-#beta#-lactam, although a few exceptions showing trans selectivity are known. In this way #beta#-lactams with a widely varying substitution pattern at the C-3 and C-4 positions of the ring are constructed stereoselectively. The diastereoselection of the cycloaddition process can be controlled with variable success from chiral groups attached to either the ketene or the imine component, or alternatively to both. This method, in turn, has proved to be valuable for the synthesis of precursors of important #beta#-lactam antibiotics, and new successful applications can be expected in the near future.
机译:[2 + 2]带有氨基,氧基或卤素基团的烯酮与亚胺之间的环加成反应被认为是通往#beta#-内酰胺最重要和最直接的途径之一。烷基取代的烯酮在与活化的亚胺(亚氨基酸酯)反应后也提供了相应的β-β-内酰胺。通常,烯酮由适当的酰氯和叔胺生成。环加成反应的主要产物或唯一产物通常是顺式-β-β-内酰胺,尽管已知有几个显示反式选择性的例外。以这种方式,立体选择性地构建了在环的C-3和C-4位置具有广泛变化的取代模式的#β#-内酰胺。环加成过程的非对映选择可通过与烯酮或亚胺组分或二者结合的手性基团的不同成功控制。反过来,已证明该方法对于重要的#beta#-内酰胺抗生素的前体的合成很有价值,在不久的将来可以期待新的成功应用。

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