Poulsen Thomas B, Bernardi Luca, Aleman José, Overgaard Jacob, Jørgensen Karl Anker
Department of Chemistry, Center for Catalysis, Danish National Research Foundation, Aarhus University, DK-8000 Aarhus C, Denmark.
J Am Chem Soc. 2007 Jan 17;129(2):441-9. doi: 10.1021/ja067289q.
The first organocatalytic enantioselective direct alpha-alkynylation of beta-ketoesters and 3-acyl oxindoles is described. It is demonstrated that activated beta-halo-alkynes undergo nucleophilic acetylenic substitution catalyzed by chiral phase-transfer compounds to afford the alkynylated products in high yields and excellent enantioselectivities. The potential of the reaction is first demonstrated for various alkynylating reagents having chloride and bromide as the leaving groups and substituents such as allyl and alkyl esters, amides, ketones, and sulfones. These reactions proceed with 74-99% yield and 88-97% ee. Then the scope in nucleophile is demonstrated for a large number of cyclic beta-ketoesters with various ring-sizes and for oxindoles as well. The corresponding optically active products are formed in high yields and with enantioselectivities up to 98% ee. The procedure allows for the stereocontrolled attachment of an ethynyl unit in the alpha-position to the carbonyl compound by facile removal of the activating group, and this has been demonstrated for a number of the optically active allyl esters. Furthermore, the synthesis of optically active 1,4-enynes is also shown. The isolation and characterization by X-ray analysis of the catalyst with p-nitrophenolate as the counterion allowed us to propose a model of the catalyst-substrate intermediate which might account for the observed enantioselectivity of the organocatalytic enantioselective alpha-alkynylation reaction. Furthermore, it is suggested that this intermediate is also the reactive species for a number of other electrophiles adding to beta-ketoesters giving enantioselectivities in the range of 90-98% ee.
本文描述了首例β-酮酯和3-酰基氧化吲哚的有机催化对映选择性直接α-炔基化反应。结果表明,活化的β-卤代炔烃在手性相转移化合物催化下发生亲核炔基取代反应,以高收率和优异的对映选择性得到炔基化产物。该反应的潜力首先在各种以氯和溴作为离去基团以及烯丙基和烷基酯、酰胺、酮和砜等取代基的炔基化试剂中得到证明。这些反应的收率为74-99%,对映体过量值(ee)为88-97%。然后,该反应对亲核试剂的适用范围也在大量具有不同环大小的环状β-酮酯以及氧化吲哚中得到了证明。相应的光学活性产物以高收率形成,对映选择性高达98% ee。该方法通过轻松去除活化基团,能够在羰基化合物的α位立体控制地连接乙炔基单元,这已在多种光学活性烯丙基酯中得到证明。此外,还展示了光学活性1,4-烯炔的合成。对以对硝基苯酚盐为抗衡离子的催化剂进行X射线分析分离和表征,使我们能够提出一种催化剂-底物中间体模型,该模型可能解释了有机催化对映选择性α-炔基化反应中观察到的对映选择性。此外,有人认为该中间体也是许多其他亲电试剂加成到β-酮酯上的活性物种,对映选择性在90-98% ee范围内。