Sutcliffe Erica, Cagan David A, Hadt Ryan G
Division of Chemistry and Chemical Engineering, Arthur Amos Noyes Laboratory of Chemical Physics, California Institute of Technology, Pasadena, California 91125, United States.
J Am Chem Soc. 2024 Jun 5;146(22):15506-15514. doi: 10.1021/jacs.4c04091. Epub 2024 May 22.
Owing to their light-harvesting properties, nickel-bipyridine (bpy) complexes have found wide use in metallaphotoredox cross-coupling reactions. Key to these transformations are Ni(I)-bpy halide intermediates that absorb a significant fraction of light at relevant cross-coupling reaction irradiation wavelengths. Herein, we report ultrafast transient absorption (TA) spectroscopy on a library of eight Ni(I)-bpy halide complexes, the first such characterization of any Ni(I) species. The TA data reveal the formation and decay of Ni(I)-to-bpy metal-to-ligand charge transfer (MLCT) excited states (10-30 ps) whose relaxation dynamics are well described by vibronic Marcus theory, spanning the normal and inverted regions as a result of simple changes to the bpy substituents. While these lifetimes are relatively long for MLCT excited states in first-row transition metal complexes, their duration precludes excited-state bimolecular reactivity in photoredox reactions. We also present a one-step method to generate an isolable, solid-state Ni(I)-bpy halide species, which decouples light-initiated reactivity from dark, thermal cycles in catalysis.
由于其光捕获特性,镍 - 联吡啶(bpy)配合物在金属光氧化还原交叉偶联反应中得到了广泛应用。这些转化的关键是Ni(I)-bpy卤化物中间体,它们在相关交叉偶联反应的辐照波长下吸收相当一部分光。在此,我们报道了对八个Ni(I)-bpy卤化物配合物库的超快瞬态吸收(TA)光谱研究,这是对任何Ni(I)物种的首次此类表征。TA数据揭示了Ni(I)到bpy的金属到配体电荷转移(MLCT)激发态的形成和衰减(10 - 30皮秒),其弛豫动力学可以通过振动马库斯理论很好地描述,由于对联吡啶取代基的简单改变,跨越了正常和反转区域。虽然对于第一行过渡金属配合物中的MLCT激发态来说,这些寿命相对较长,但它们的持续时间排除了光氧化还原反应中激发态双分子反应性。我们还提出了一种一步法来生成可分离的固态Ni(I)-bpy卤化物物种,该方法将光引发的反应性与催化中的暗热循环解耦。