Tsinghua Institute of Multidisciplinary Biomedical Research, Tsinghua University, 100084, Beijing, China.
National Institute of Biological Sciences, 102206, Beijing, China.
Angew Chem Int Ed Engl. 2023 Jun 26;62(26):e202304177. doi: 10.1002/anie.202304177. Epub 2023 May 17.
Despite several methodologies established for C(sp )-I selective C(sp )-C(sp ) bond formations, achieving arene-flanked quaternary carbons by cross-coupling of tertiary alkyl precursors with bromo(iodo)arenes in a C(sp )-I selective manner is rare. Here we report a general Ni-catalyzed C(sp )-I selective cross-electrophile coupling (XEC) reaction, in which, beyond 3° alkyl bromides (for constructing arene-flanked quaternary carbons), 2° and 1° alkyl bromides are also demonstrated to be viable coupling partners. Moreover, this mild XEC displays excellent C(sp )-I selectivity and functional group compatibility. The practicality of this XEC is demonstrated in simplifying the routes to several medicinally relevant and synthetically challenging compounds. Extensive experiments show that the terpyridine-ligated Ni halide can exclusively activate alkyl bromides, forming a Ni -alkyl complex through a Zn reduction. Attendant density functional theory (DFT) calculations reveal two different pathways for the oxidative addition of the Ni -alkyl complex to the C(sp )-I bond of bromo(iodo)arenes, explaining both the high C(sp )-I selectivity and generality of our XEC.
尽管已经建立了几种用于 C(sp )-I 选择性 C(sp )-C(sp )键形成的方法,但通过与溴代(碘代)芳烃的叔烷基前体的交叉偶联以 C(sp )-I 选择性方式实现芳基侧翼季碳是罕见的。在这里,我们报道了一种通用的 Ni 催化的 C(sp )-I 选择性交叉亲电子偶联(XEC)反应,其中,除了 3°烷基溴化物(用于构建芳基侧翼季碳)外,2°和 1°烷基溴化物也被证明是可行的偶联伙伴。此外,这种温和的 XEC 表现出优异的 C(sp )-I 选择性和官能团兼容性。该 XEC 的实用性在简化几种具有医学相关性和合成挑战性的化合物的路线方面得到了证明。大量实验表明,三吡啶配体的 Ni 卤化物可以专一地激活烷基溴化物,通过 Zn 还原形成 Ni-烷基配合物。伴随的密度泛函理论(DFT)计算揭示了 Ni-烷基配合物与溴代(碘代)芳烃的 C(sp )-I 键的氧化加成的两种不同途径,解释了我们的 XEC 的高 C(sp )-I 选择性和通用性。