Wu Caizhi, Ge Shaozhong
Department of Chemistry, National University of Singapore 3 Science Drive 3 Singapore 117543 Singapore
Chem Sci. 2020 Feb 5;11(10):2783-2789. doi: 10.1039/c9sc06136c.
We report a stereoselective regiodivergent hydroboration of aryl,alkyl-disubstituted internal allenes with pinacolborane (HBpin) in the presence of cobalt catalysts generated from bench-stable Co(acac) and bisphosphine ligands. An interesting correlation between the regioselectivity of this hydroboration and the bite angles of bisphosphine ligands was identified. When hydroboration was conducted with cobalt catalysts containing bisphosphines with medium bite angles ( 98° for dppb and 96° for dppf), HBpin was selectively added to the alkyl-substituted double bond. However, HBpin was selectively added to the aryl-substituted double bond when the reactions were conducted with cobalt catalysts containing bisphosphines with large bite angles ( 111° for xantphos and 114° for Nixantphos). A range of internal allenes underwent these Co-catalyzed hydroboration reactions in a regiodivergent manner to yield the corresponding ()-alkenylboronates in high isolated yields and with high regioselectivity. These reactions show good functional group compatibility and can be readily scaled up to gram scales without using a dry box. In addition, the comparison of regioselectivity between the Co-catalyzed hydrosilylation and hydroboration reactions of the same allene substrate suggests that this Co-catalyzed regiodivergent hydroboration of allenes proceeds through a Co-Bpin intermediate. Deuterium-labeling experiments suggest that the Co-Bpin intermediates react with allenes to form allylcobalt species which then react with HBpin to release ()-alkenylboronate products.
我们报道了在由市售稳定的Co(acac)和双膦配体生成的钴催化剂存在下,芳基、烷基二取代的内联烯与频哪醇硼烷(HBpin)的立体选择性区域发散硼氢化反应。该硼氢化反应的区域选择性与双膦配体的咬合角之间存在有趣的相关性。当用含中等咬合角双膦的钴催化剂进行硼氢化反应时(dppb为98°,dppf为96°),HBpin选择性地加成到烷基取代的双键上。然而,当反应使用含大咬合角双膦的钴催化剂进行时(xantphos为111°,Nixantphos为114°),HBpin选择性地加成到芳基取代的双键上。一系列内联烯以区域发散的方式进行这些钴催化的硼氢化反应,以高分离产率和高区域选择性得到相应的()-烯基硼酸酯。这些反应显示出良好的官能团兼容性,并且无需使用干燥箱即可轻松放大至克级规模。此外,相同联烯底物的钴催化硅氢化反应和硼氢化反应之间的区域选择性比较表明,这种钴催化的联烯区域发散硼氢化反应通过Co-Bpin中间体进行。氘标记实验表明,Co-Bpin中间体与联烯反应形成烯丙基钴物种,然后烯丙基钴物种与HBpin反应释放出()-烯基硼酸酯产物。