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烯烃硼氢化-氢化反应实现了高活性、位点选择性的钴催化硼氢化反应。

Alkene Borylation-Hydrogenation Enables Highly Active, Site-Selective Cobalt-Catalyzed Borylation.

作者信息

Shimozono Alex M, Roque Jose B, Li Haozheng, Zhang Tianyi, Lin Ronghui, Chirik Paul J

机构信息

Department of Chemistry, Princeton University, Princeton, New Jersey 08544, United States.

Global Discovery Chemistry, Therapeutics Discovery, Johnson & Johnson, Spring House, Pennsylvania 19477-0776, United States.

出版信息

J Am Chem Soc. 2025 Jul 30;147(30):26437-26445. doi: 10.1021/jacs.5c05965. Epub 2025 Jul 18.

Abstract

A method for promoting highly active and site-selective cobalt-catalyzed C(sp)-H arene borylation is described. Addition of -butyl ethylene (TBE) increased the activity of the cobalt-catalyzed borylation of electron-rich arenes. With monosubstituted anisoles and anilines, synthetically useful site-selectivities favoring the -position of the ring were observed. Monitoring the catalytic reaction by H NMR spectroscopy established a borylation-hydrogenation sequence of -butyl ethylene as being responsible for the increased catalytic activity where borylation of the alkene preceded functionalization of the arene. Added or generated -BuCH═CHBPin served as the active H acceptor to overcome the inhibitory effect of HBPin and enabled both HBPin and BPin to be effective reagents for generating the active cobalt catalyst. Normal primary deuterium isotope effects of 5.0(1.2) and 6.0(2.0) in parallel and 3.1(1) and 3.7(3) in competition for and borylation, respectively, were measured at 23 °C for the catalytic borylation of -phenylmorpholine, supporting irreversible and rate-determining oxidative addition of the C(sp)-H bond during the catalytic reaction. The combination of the kinetic isotope effects, reaction monitoring, DFT studies, and stoichiometric experiments support the origin of selectivity as arising from irreversible oxidative addition of the -C(sp)-H bond to cobalt(I).

摘要

本文描述了一种促进高活性和位点选择性钴催化的C(sp)-H芳烃硼化反应的方法。加入叔丁基乙烯(TBE)提高了富电子芳烃钴催化硼化反应的活性。对于单取代苯甲醚和苯胺,观察到有利于环的对位的具有合成价值的位点选择性。通过1H NMR光谱监测催化反应,确定叔丁基乙烯的硼化-氢化序列是催化活性提高的原因,其中烯烃的硼化先于芳烃的官能化。添加或生成的叔丁基乙烯基硼酸频哪醇酯作为活性氢受体,克服了硼酸频哪醇酯(HBPin)的抑制作用,并使HBPin和硼酸频哪醇酯(BPin)都成为生成活性钴催化剂的有效试剂。在23℃下,对N-苯基吗啉的催化硼化反应,分别测定了平行反应中5.0(1.2)和6.0(2.0)以及竞争反应中3.1(1)和3.7(3)的正常一级氘同位素效应,支持了催化反应过程中C(sp)-H键的不可逆和速率决定的氧化加成。动力学同位素效应、反应监测、密度泛函理论(DFT)研究和化学计量实验的结合支持了选择性的起源是由于-C(sp)-H键向钴(I)的不可逆氧化加成。

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