Teo Wei Jie, Esteve Guasch Josep, Jiang Liyin, Li Bowen, Suero Marcos G
Institute of Chemical Research of Catalonia (ICIQ-CERCA), The Barcelona Institute of Science and Technology, Països Catalans 16, 43007 Tarragona, Spain.
Departament de Química Analítica i Química Orgánica, Universitat Rovira i Virgili, Calle Marcel·lí Domingo, 1, Tarragona 43007, Spain.
J Am Chem Soc. 2024 Aug 7;146(31):21837-21846. doi: 10.1021/jacs.4c06158. Epub 2024 Jul 26.
The interest in the discovery and development of skeletal editing processes that selectively insert, exchange, or delete an atom in organic molecules has significantly increased over the last few years. However, processes of this class that proceed through the creation of a chiral center with high asymmetric induction have been largely unexplored. Herein, we report an enantioselective single-carbon insertion in aryl- and alkyl-substituted alkenes mediated by a catalytically generated chiral Rh-carbynoid and phosphate nucleophiles that produce enantioenriched allylic phosphates (enantiomeric ratio (e.r.) = 89.5:10.5-99.5:0.5). The key to the process was a diastereo- and enantioselective cyclopropanation of the alkene with a chiral Rh-carbynoid and the formation of a transient cyclopropyl-I intermediate. The addition of the phosphate nucleophile provided a cyclopropyl-I-phosphate intermediate that undergoes disrotatory ring opening following the Woodward-Hoffmann-DePuy rules. This process led to a chiral intimate allyl cation-phosphate pair that evolved with excellent enantioretention. The evidence of an S1-like Si mechanism is provided by linear free-energy relationship studies, kinetic isotope effects, X-ray crystallography, and control experiments. We demonstrated the utility of the enantioenriched allylic phosphates in late-stage N-H allylations of natural products and drug molecules and in cross-coupling reactions that occurred with excellent enantiospecificity.
在过去几年中,人们对发现和开发能够选择性地在有机分子中插入、交换或删除原子的骨架编辑过程的兴趣显著增加。然而,这类通过高不对称诱导产生手性中心的过程在很大程度上尚未得到探索。在此,我们报道了一种由催化生成的手性铑卡宾体和磷酸酯亲核试剂介导的芳基和烷基取代烯烃中的对映选择性单碳插入反应,该反应生成对映体富集的烯丙基磷酸酯(对映体比例(e.r.)= 89.5:10.5 - 99.5:0.5)。该过程的关键是烯烃与手性铑卡宾体的非对映和对映选择性环丙烷化反应以及瞬态环丙基-I中间体的形成。磷酸酯亲核试剂的加入提供了一个环丙基-I-磷酸酯中间体,该中间体按照伍德沃德-霍夫曼-德普伊规则进行顺旋开环。这个过程导致了一个手性紧密的烯丙基阳离子-磷酸酯对,其对映体保持率极佳。线性自由能关系研究、动力学同位素效应、X射线晶体学和对照实验提供了类似S1的Si机制的证据。我们证明了对映体富集的烯丙基磷酸酯在天然产物和药物分子的后期N-H烯丙基化反应以及以优异的对映体特异性发生的交叉偶联反应中的实用性。