Ting Stephen I, Williams Wendy L, Doyle Abigail G
Department of Chemistry, Princeton University, Princeton, New Jersey 08544, United States.
Department of Chemistry and Biochemistry, University of California, Los Angeles, California 90095, United States.
J Am Chem Soc. 2022 Mar 30;144(12):5575-5582. doi: 10.1021/jacs.2c00462. Epub 2022 Mar 17.
The oxidative addition of aryl halides to bipyridine- or phenanthroline-ligated nickel(I) is a commonly proposed step in nickel catalysis. However, there is a scarcity of complexes of this type that both are well-defined and undergo oxidative addition with aryl halides, hampering organometallic studies of this process. We report the synthesis of a well-defined Ni(I) complex, [(bpy)NiCl] (). Its solution-phase speciation is characterized by a significant population of monomer and a redox equilibrium that can be perturbed by π-acceptors and σ-donors. reacts readily with aryl bromides, and mechanistic studies are consistent with a pathway proceeding through an initial Ni(I) → Ni(III) oxidative addition to form a Ni(III) aryl species. Such a process was demonstrated stoichiometrically for the first time, affording a structurally characterized Ni(III) aryl complex.
芳基卤化物对联吡啶或菲咯啉配位的镍(I)的氧化加成是镍催化中普遍提出的一个步骤。然而,这类既结构明确又能与芳基卤化物发生氧化加成的配合物却很稀少,这阻碍了对该过程的有机金属研究。我们报道了一种结构明确的Ni(I)配合物[(bpy)NiCl]()的合成。其溶液相形态的特征是存在大量单体以及一个可被π受体和σ供体扰动的氧化还原平衡。该配合物能与芳基溴迅速反应,机理研究表明其反应途径是先通过Ni(I)→Ni(III)的氧化加成形成一个Ni(III)芳基物种。这样的过程首次以化学计量的方式得到证实,得到了一个结构已表征的Ni(III)芳基配合物。