Wu Ting-Feng, Zhang Yue-Jiao, Fu Yue, Liu Fang-Jie, Tang Jian-Tao, Liu Peng, Toste F Dean, Ye Baihua
School of Physical Science and Technology, ShanghaiTech University, Shanghai 201210, China.
These authors contributed equally.
Chem. 2021 Jul 8;7(7):1963-1974. doi: 10.1016/j.chempr.2021.06.007.
Transition metal-catalyzed cross-electrophile coupling (XEC) is a powerful tool for forging C(sp)-C(sp) bonds in biaryl molecules from abundant aromatic halides. While syntheses of unsymmetrical biaryl compounds through multimetallic XEC is of high synthetic value, selective XEC of two heteroaromatic halides remains elusive and challenging. Herein we report a homogeneous XEC method which relies on a zirconaaziridine complex as a shuttle for dual palladium catalyzed processes. The zirconaaziridine-mediated palladium (ZAPd) catalyzed reaction shows excellent compatibility with various functional groups and diverse heteroaromatic scaffolds. In accord with density functional theory (DFT) calculations, a redox-transmetallation between the oxidative addition product and the zirconaaziridine is proposed as the crucial elementary step. Thus, cross-coupling selectivity using a single transition metal catalyst is controlled by the relative rate of oxidative addition of Pd(0) into the aromatic halide. Overall, the concept of a combined reducing and transmetallating agent offers opportunities for development of transition-metal reductive coupling catalysis.
过渡金属催化的交叉亲电偶联(XEC)是一种利用丰富的芳基卤化物在联芳基分子中构建C(sp)-C(sp)键的强大工具。虽然通过多金属XEC合成不对称联芳基化合物具有很高的合成价值,但两种杂芳基卤化物的选择性XEC仍然难以实现且具有挑战性。在此,我们报道了一种均相XEC方法,该方法依赖于锆氮杂环丙烷配合物作为双钯催化过程的穿梭体。锆氮杂环丙烷介导的钯(ZAPd)催化反应对各种官能团和不同的杂芳基骨架具有出色的兼容性。根据密度泛函理论(DFT)计算,氧化加成产物与锆氮杂环丙烷之间的氧化还原转金属化被认为是关键的基元步骤。因此,使用单一过渡金属催化剂的交叉偶联选择性由Pd(0)向芳基卤化物氧化加成的相对速率控制。总体而言,还原和转金属化剂相结合的概念为过渡金属还原偶联催化的发展提供了机会。