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Rhodium-catalyzed intermolecular chelation controlled alkene and alkyne hydroacylation: Synthetic scope of beta-S-substituted aldehyde substrates

机译:铑催化的分子间螯合控制的烯烃和炔烃的加氢酰化作用:β-S-取代醛底物的合成范围

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摘要

The use beta-S-substituted aldehydes in rhodium-catalyzed intermolecular hydroacylation reactions is reported. Aldehydes substituted with either sulfide or thioacetal groups undergo efficient hydroacylation with a variety of electron-poor alkenes, such as enoates, in Stetter-like processes and with both electron-poor and neutral alkynes. In general, the reactions with electron-poor alkenes demonstrate good selectivity for the linear regioisomer, and the reactions with alkynes provide enone products with excellent selectivity for the E-isomers. The scope of the process was shown to be broad, tolerating a variety of substitution patterns and functional groups on both reaction components. A novel CN-directing effect was shown to be responsible for reversing the regioselectivity in a number of alkyne hydroacylation reactions. Catalyst loadings as low as 0.1 mol % were achievable.
机译:报道了在铑催化的分子间加氢酰化反应中使用β-S​​-取代的醛。被硫化物或硫缩醛基团取代的醛在类似Stetter的过程中与各种贫电子的烯烃(如烯酸酯)以及贫电子和中性炔烃进行有效的加氢酰化反应。通常,与贫电子烯烃的反应显示出对线性区域异构体的良好选择性,与炔烃的反应提供了对E-异构体具有优异选择性的烯酮产物。结果表明,该方法的范围很广,在两个反应组分上都可以耐受各种取代方式和官能团。结果表明,在许多炔烃加氢酰化反应中,一种新颖的CN导向作用可逆转区域选择性。催化剂负载量可低至0.1 mol%。

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