首页> 外文期刊>有機合成化学協会誌 >Development of Direct Enantioselective Alkynylation of alpha-Ketoester and alpha-Ketiminoesters Catalyzed by Phenylbis(oxazoline)Rh(III) Complexes
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Development of Direct Enantioselective Alkynylation of alpha-Ketoester and alpha-Ketiminoesters Catalyzed by Phenylbis(oxazoline)Rh(III) Complexes

机译:苯基本底催化(氧基唑啉)RH(III)复合物催化的α-酮酯和α-酮氨基酯直接对映选择性醇烷基化的研制

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Direct catalytic enantioselective alkynylation of carbonyl compounds and imines is one of the most efficient approaches for the synthesis of propargylic alcohols and propargylamines, which are potent building blocks for synthesizing functionalized molecules. While a variety of methods for the reactions with aldehydes and aldimines have been established, the reactions with ketones and ketimines remain underdeveloped due to their reduced reactivity and difficulty in stereocontrol. In this account, we summarized our studies on direct enantioselective alkynylation reaction of alpha-ketoester and alpha-ketiminoesters catalyzed by phenylbis (oxazoline)(phebox)-rhodium(III) complexes, affording enantioenriched propargyl alcohols and propargylamines with a tetrasubstituted carbon stereocenter under proton-transfer conditions. The catalytic system was compatible to a wide range of functional groups, including electrophilic formyl groups, and allowed for the development of an efficient method to access enantioenriched alpha-CF3-substituted thalidomide analogs. Mechanistic studies revealed that generation of the (alkynyl)(phebox)Rh(III) complex from the (diacetato)(phebox)Rh(III) complex determined the overall reaction rate in the initial stages of the reaction. These results, along with the observed facile exchange of the alkynyl ligand on the (alkynyl)(phebox)Rh(III) complexes, led us to use (trimethylsilylethynyl)(phebox)Rh(III) complexes as a new pre-catalyst. The new catalytic system with (trimethylsilylethynyl) (phebox)Rh (III) precatalysts exhibited enhanced catalytic performance, reduced catalyst loading to as low as 0.5 mol%, and expanded the substrate scope of the reaction with less reactive alpha-ketiminophosphonate and cyclic N-sulfonyl alpha-ketiminoesters.
机译:羰基化合物和亚胺的直接催化对映选择性醇烷基化是合成丙氨酸和丙氨酸的最有效的方法之一,这是用于合成官能化分子的有效的构建块。虽然已经建立了各种对醛和醛胺的反应方法,但由于其降低的反应性和立体控制中的难度,与酮和酮段的反应仍未趋于。在本述语中,我们总结了我们关于苯基本底(哌唑啉)(嗜恶唑骨)(III)络合物催化的α-酮酯和α-酮氨基酯的直接对映选择性醇烷基化反应的研究,得到苯甲酸二硫基醇和Proton下用四取代的碳立体封闭剂的丙醇丙氨酸和炔丙胺 - 传动圈条件。催化体系与各种官能团相容,包括电泳甲酰基,并允许开发有效的方法以获得对苯丙基甲基-CF3取代的沙利度胺类似物的方法。机械研究表明,从(二乙酰盐)(氏植物)(III)复合物中的(炔基)(III)复合物的产生确定了反应的初始阶段中的整体反应速率。这些结果以及所观察到的(炔基)RH(III)复合物上的炔基配体的容易交换,使我们使用(三甲基甲硅烷乙烯基)(Phebox)Rh(III)配合物作为新的催化剂。具有(三甲基甲酰基乙炔基)(Phebox)RH(III)的新催化系统表现出增强的催化性能,降低催化剂负载至0.5mol%,并使反应的底物范围与较少的反应性α-酮米磷酸盐和环状N-膨胀磺酰基亚甲基酮氨基酯。

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