Hodgson David M, Brückl Tobias, Glen Rebecca, Labande Agnès H, Selden Deborah A, Dossetter Alexander G, Redgrave Alison J
Department of Chemistry, University of Oxford, Chemistry Research Laboratory, Mansfield Road, Oxford OX1 3TA, United Kingdom.
Proc Natl Acad Sci U S A. 2004 Apr 13;101(15):5450-4. doi: 10.1073/pnas.0307274101. Epub 2004 Mar 22.
Catalyzed cascade reactions that generate molecular complexity rapidly and in an enantioselective manner are attractive methods for asymmetric synthesis. In the present article, chiral rhodium catalysts are shown to effect such a transformation by using a range of 2-diazo-3,6-diketoesters with bicyclo[2.2.1]alkenes and styrenes as reaction partners. The reactions are likely to proceed by formation of a catalyst-complexed carbonyl ylide from the diazo compound, followed by intermolecular cycloaddition with the alkene dipolarophile. It was possible to obtain high levels of asymmetric induction [up to 89% enantiomeric excess (ee) and 92% ee for the two chiral catalysts investigated]. Enantioselectivity is not highly sensitive to substituent variation at the ketone that forms the ylide; however, branching does improve ee. Observations of dipolarophile-dependent enantiofacial selectivity in the cycloadditions indicate that the dipolarophile can be intimately involved in the enantiodiscrimination process.
能够快速且以对映选择性方式产生分子复杂性的催化级联反应是不对称合成的有吸引力的方法。在本文中,手性铑催化剂通过使用一系列2-重氮-3,6-二酮酯与双环[2.2.1]烯烃和苯乙烯作为反应伙伴来实现这种转化。反应可能通过从重氮化合物形成催化剂络合的羰基叶立德,然后与烯烃亲偶极体进行分子间环加成来进行。有可能获得高水平的不对称诱导(对于所研究的两种手性催化剂,对映体过量高达89%和92%)。对映选择性对形成叶立德的酮上的取代基变化不太敏感;然而,支链确实提高了对映体过量。在环加成中观察到的亲偶极体依赖性对映面选择性表明亲偶极体可能密切参与对映体识别过程。