Department of Chemistry, Merkert Chemistry Center, Boston College, Chestnut Hill, MA, 02467, USA.
Angew Chem Int Ed Engl. 2019 Feb 25;58(9):2685-2691. doi: 10.1002/anie.201812535. Epub 2019 Feb 6.
Racemic vinylallenes are shown to be effective substrates for catalytic multicomponent diastereo- and enantioselective 1,6-conjugate addition of multifunctional allyl moieties to easily accessible α,β,γ,δ-unsaturated diesters. Reactions may be catalyzed by 5.0 mol % of a readily accessible NHC-Cu complex at ambient temperature, and other than a vinylallene, involve B (pin) and an α,β,γ,δ-unsaturated diester. A variety of vinylallenes were converted to products bearing a Z-trisubstituted alkenyl-B(pin) moiety, a vinyl group, a β,γ-unsaturated diester unit, and vicinal stereogenic centers in up to 67 % yield, 87:13 Z/E ratio, >98:2 d.r., and 98:2 e.r. Chemoselective modifications involving the alkenyl-B(pin), the vinyl, or the 1,2-disubstituted olefin moieties were carried out to demonstrate versatility and utility. Stereochemical models, based on mechanistic and DFT studies, demonstrate the dynamic behavior of intermediated Cu-allyl species and account for various selectivity profiles.
外消旋乙烯基联烯被证明是有效的催化多组分非对映和对映选择性 1,6-共轭加成多功能烯丙基部分到容易获得的α,β,γ,δ-不饱和二酯的有效底物。反应可以在环境温度下由 5.0 mol%的易得 NHC-Cu 配合物催化,除了乙烯基联烯外,还涉及 B(pin)和α,β,γ,δ-不饱和二酯。各种乙烯基联烯被转化为产物,其具有 Z-三取代烯基-B(pin)部分、一个乙烯基、一个β,γ-不饱和二酯单元和相邻的立体中心,产率高达 67%,Z/E 比为 87:13,dr 值大于 98:2,ee 值为 98:2。涉及烯基-B(pin)、乙烯基或 1,2-取代烯烃部分的化学选择性修饰证明了其多功能性和实用性。基于机理和 DFT 研究的立体化学模型,证明了中间 Cu-烯丙基物种的动态行为,并解释了各种选择性模式。