Kozhummal Hima, Das Sandip Kumar, Cooze Christopher J C, Lundgren Rylan J
Department of Chemistry, University of Alberta, Edmonton, Alberta, T6G 2G2, Canada.
Angew Chem Int Ed Engl. 2024 Jul 29;63(31):e202406102. doi: 10.1002/anie.202406102. Epub 2024 Jun 30.
Metal-catalyzed enantioselective conjugate arylations of electron-poor alkenes are highly selective processes for C(sp)-C(sp) bond formation. δ-Selective hydroarylations of electron-poor 1,3-dienes are less well developed and reactions that deliver high enantioselectivity while giving single alkene isomer products are elusive. Here we report the Rh-catalyzed δ-arylation of aryl-substituted 1,3-dienes that gives nearly exclusive Z-1,4-addition products (generally with >95 : 5 positional and geometrical selectivity). This remote functionalization provides access to chiral diarylated alkenes from readily available precursors poised for further functionalization, including in the synthesis of bioactive molecules. Mechanistic studies suggest that protonolysis of a Rh-allyl intermediate generated by diene insertion into a Rh-aryl is the turnover limiting step and occurs by an inner-sphere proton transfer pathway.
贫电子烯烃的金属催化对映选择性共轭芳基化反应是形成C(sp)-C(sp)键的高度选择性过程。贫电子1,3-二烯的δ-选择性氢芳基化反应发展较少,同时提供高对映选择性且生成单一烯烃异构体产物的反应难以实现。在此,我们报道了铑催化的芳基取代1,3-二烯的δ-芳基化反应,该反应几乎只生成Z-1,4-加成产物(通常具有>95:5的位置和几何选择性)。这种远程官能团化反应可从易于获得的前体出发制备手性二芳基烯烃,这些前体可用于进一步的官能团化反应,包括生物活性分子的合成。机理研究表明,二烯插入铑-芳基配合物生成的铑-烯丙基中间体的质子解是周转限制步骤,且通过内球质子转移途径发生。