Miller Karen M, Luanphaisarnnont Torsak, Molinaro Carmela, Jamison Timothy F
Massachusetts Institute of Technology, Department of Chemistry, Cambridge, Massachusetts, USA.
J Am Chem Soc. 2004 Apr 7;126(13):4130-1. doi: 10.1021/ja0491735.
In alkene-directed, nickel-catalyzed coupling reactions of 1,3-enynes with aldehydes and epoxides, the conjugated alkene dramatically enhances reactivity and uniformly directs regioselectivity, independent of the nature of the other alkyne substituent (aryl, alkyl (1 degrees , 2 degrees , 3 degrees )) or the degree of alkene substitution (mono-, di-, tri-, and tetrasubstituted). These observations are best explained by a temporary interaction between the alkene and the transition metal center during the regioselectivity-determining step. The highly substituted 1,3-diene products are useful in organic synthesis and, in conjunction with a Rh-catalyzed, site-selective hydrogenation, afford allylic and homoallylic alcohols that previously could not be prepared in high regioselectivity (or at all) with related Ni-catalyzed alkyne coupling reactions.
在烯烃导向的、镍催化的1,3-烯炔与醛和环氧化物的偶联反应中,共轭烯烃显著提高了反应活性,并统一引导区域选择性,而与其他炔烃取代基的性质(芳基、烷基(一级、二级、三级))或烯烃取代程度(单取代、二取代、三取代和四取代)无关。这些观察结果最好用区域选择性决定步骤中烯烃与过渡金属中心之间的临时相互作用来解释。高度取代的1,3-二烯产物在有机合成中很有用,并且与铑催化的位点选择性氢化反应相结合,可提供之前通过相关镍催化的炔烃偶联反应无法以高区域选择性(或根本无法)制备的烯丙醇和高烯丙醇。