Kang Taeho, Erbay Tuğçe G, Xu Kane L, Gallego Gary M, Burtea Alexander, Nair Sajiv K, Patman Ryan L, Zhou Ru, Sutton Scott C, McAlpine Indrawan J, Liu Peng, Engle Keary M
Department of Chemistry, Scripps Research, 10550 North Torrey Pines Road, La Jolla, California 92037, United States.
Department of Chemistry, University of Pittsburgh, Pittsburgh, Pennsylvania 15260, United States.
ACS Catal. 2020 Nov 6;10(21):13075-13083. doi: 10.1021/acscatal.0c03622. Epub 2020 Oct 27.
A unified synthetic strategy to access tertiary four-membered carbo/heterocyclic boronic esters is reported. Use of a Cu(I) catalyst in combination with a modified dppbz ligand enables regioselective hydroboration of various trisubstituted benzylidenecyclobutanes and carbo/heterocyclic analogs. The reaction conditions are mild, and the method tolerates a wide range of medicinally relevant heteroarenes. The protocol can be conveniently conducted on gram-scale, and the tertiary boronic ester products undergo facile diversification into valuable targets. Reaction kinetics and computational studies indicate that the migratory insertion step is turnover-limiting and accelerated by electron-withdrawing groups on the dppbz ligand. Energy decomposition analysis (EDA) calculations reveal that electron-deficient -aryl groups on the dppbz ligand enhance the T-shaped π/π interactions with the substrate and stabilize the migratory insertion transition state.
报道了一种用于合成叔碳四元碳/杂环硼酸酯的统一合成策略。使用铜(I)催化剂与修饰的dppbz配体相结合,能够对各种三取代亚苄基环丁烷和碳/杂环类似物进行区域选择性硼氢化反应。反应条件温和,该方法能耐受多种与药物相关的杂芳烃。该方案可方便地进行克级规模的反应,叔硼酸酯产物可轻松转化为有价值的目标化合物。反应动力学和计算研究表明,迁移插入步骤是限速步骤,且dppbz配体上的吸电子基团可加速该步骤。能量分解分析(EDA)计算表明,dppbz配体上缺电子的芳基增强了与底物的T形π/π相互作用,并稳定了迁移插入过渡态。