Ton Nhan N H, Mai Binh Khanh, Nguyen Thanh Vinh
School of Chemistry, University of New South Wales, Sydney, New South Wales 2052, Australia.
Department of Chemistry, University of Pittsburgh, Pittsburgh, Pennsylvania 15260, United States.
J Org Chem. 2021 Jul 2;86(13):9117-9133. doi: 10.1021/acs.joc.1c01208. Epub 2021 Jun 16.
Hydroboration reaction of alkynes is one of the most synthetically powerful tools to access organoboron compounds, versatile precursors for cross-coupling chemistry. This type of reaction has traditionally been mediated by transition-metal or main group catalysts. Herein, we report a novel method using tropylium salts, typically known as organic oxidants and Lewis acids, to promote the hydroboration reaction of alkynes. A broad range of vinylboranes can be easily accessed via this metal-free protocol. Similar hydroboration reactions of alkenes and epoxides can also be efficiently catalyzed by the same tropylium catalysts. Experimental studies and DFT calculations suggested that the reaction follows an uncommon mechanistic pathway, which is triggered by the hydride abstraction of pinacolborane with tropylium ion. This is followed by a series of counterion-activated substituent exchanges to generate boron intermediates that promote the hydroboration reaction.
炔烃的硼氢化反应是获取有机硼化合物最具合成效力的工具之一,有机硼化合物是交叉偶联化学中用途广泛的前体。传统上,这类反应是由过渡金属或主族催化剂介导的。在此,我们报道了一种使用通常作为有机氧化剂和路易斯酸的环庚三烯盐来促进炔烃硼氢化反应的新方法。通过这种无金属方法可以轻松获得多种乙烯基硼烷。相同的环庚三烯催化剂也能有效催化烯烃和环氧化物的类似硼氢化反应。实验研究和密度泛函理论计算表明,该反应遵循一条不常见的机理途径,该途径由环庚三烯离子夺取频哪醇硼烷中的氢负离子引发。随后是一系列抗衡离子活化的取代基交换,以生成促进硼氢化反应的硼中间体。