Zhong Yuanhai, Zhou Taigang, Zhang Zhuohua, Chang Ruiqing
College of Chemistry and Chemical Engineering and State Key Laboratory of Oil and Gas Reservoir Geology and Exploitation, Southwest Petroleum University, Xindu Road 8, Chengdu, Sichuan 610500, China.
ACS Omega. 2019 May 14;4(5):8487-8494. doi: 10.1021/acsomega.9b00930. eCollection 2019 May 31.
The first-time use of the oxazaborolidine complex in transfer hydrogenation was accomplished. It was prepared without difficulty from cheap materials: ethanolamine and BH·THF. A general and efficient method for copper-catalyzed transfer hydrogenation of a variety of N-heteroaromatics with an oxazaborolidine-BH complex under mild reaction conditions afforded the corresponding hydrogenated products in up to 96% yield. Mechanistic studies indicate that the hydrogen source originated from water and borane that coordinate with the nitrogen atom of oxazaborolidine. Accordingly, a plausible mechanism for this reaction was proposed. This method was successfully used in the key step synthesis of natural products (±)-angustureine and (±)-galipinine in three steps.
首次实现了恶唑硼烷配合物在转移氢化反应中的应用。它由廉价原料乙醇胺和硼氢化四氢呋喃(BH·THF)轻松制备而成。一种通用且高效的方法,即在温和反应条件下,用恶唑硼烷 - BH配合物对多种氮杂芳烃进行铜催化转移氢化反应,可得到产率高达96%的相应氢化产物。机理研究表明,氢源来自与恶唑硼烷氮原子配位的水和硼烷。据此,提出了该反应合理的机理。该方法成功应用于天然产物(±) - 狭叶番荔枝碱和(±) - 加利平宁三步关键步骤的合成中。