Department of Chemistry , New York University , 100 Washington Square East , New York , New York 10003 , United States.
J Am Chem Soc. 2019 Jan 30;141(4):1788-1796. doi: 10.1021/jacs.8b13499. Epub 2019 Jan 17.
Ni(I)-mediated single-electron oxidative activation of alkyl halides has been extensively proposed as a key step in Ni-catalyzed cross-coupling reactions to generate radical intermediates. There are four mechanisms through which this step could take place: oxidative addition, outer-sphere electron transfer, inner-sphere electron transfer, and concerted halogen-atom abstraction. Despite considerable computational studies, there is no experimental study to evaluate all four pathways for Ni(I)-mediated alkyl radical formation. Herein, we report the isolation of a series of (Xantphos)Ni(I)-Ar complexes that selectively activate alkyl halides over aryl halides to eject radicals and form Ni(II) complexes. This observation allows the application of kinetic studies on the steric, electronic, and solvent effects, in combination with DFT calculations, to systematically assess the four possible pathways. Our data reveal that (Xantphos)Ni(I)-mediated alkyl halide activation proceeds via a concerted halogen-atom abstraction mechanism. This result corroborates previous DFT studies on (terpy)Ni(I)- and (py)Ni(I)-mediated alkyl radical formation, and contrasts with the outer-sphere electron transfer pathway observed for (PPh)Ni(0)-mediated aryl halide activation. This study of a model system provides insight into the overall mechanism of Ni-catalyzed cross-coupling reactions and offers a basis for differentiating electrophiles in cross-electrophile coupling reactions.
镍(I)介导的卤代烃单电子氧化活化被广泛认为是镍催化交叉偶联反应中生成自由基中间体的关键步骤。该步骤可能通过四种机制发生:氧化加成、外球电子转移、内球电子转移和协同卤原子攫取。尽管有大量的计算研究,但没有实验研究来评估镍(I)介导的烷基自由基形成的所有四种途径。在此,我们报告了一系列(Xantphos)Ni(I)-Ar 配合物的分离,这些配合物可选择性地激活卤代烷烃而不是卤代芳烃,以逐出自由基并形成 Ni(II)配合物。这一观察结果允许对动力学研究进行空间、电子和溶剂效应的评估,并结合密度泛函理论(DFT)计算,系统地评估这四种可能的途径。我们的数据表明,(Xantphos)Ni(I)介导的卤代烷烃活化通过协同卤原子攫取机制进行。这一结果与(terpy)Ni(I)和(py)Ni(I)介导的烷基自由基形成的先前 DFT 研究相符,与(PPh)Ni(0)介导的芳基卤化物活化观察到的外球电子转移途径形成对比。该模型体系的研究提供了对镍催化交叉偶联反应总体机制的深入了解,并为区分交叉亲核偶联反应中的亲电试剂提供了依据。