Granados Diego A, Du Y Emily, Andersson Shiloh J, Cirincione-Lynch Avery, Cui Kai, Reinhold Adam, Jeffrey Philip D, Scholes Gregory D, Hammes-Schiffer Sharon, Knowles Robert R
Department of Chemistry, Princeton University, Princeton, New Jersey 08544, United States.
J Am Chem Soc. 2025 Jun 18;147(24):20703-20715. doi: 10.1021/jacs.5c04000. Epub 2025 Jun 10.
The design of catalysts capable of functionalizing unactivated C(sp)-H bonds remains a significant goal in synthetic organic chemistry. Herein, we present a novel set of iridium polypyridyl complexes bearing pendent Brønsted basic carboxylates that become potent hydrogen atom abstraction catalysts upon visible light irradiation. Thermochemical and spectroscopic characterization reveal that these excited-state complexes exhibit bond dissociation free energies (BDFEs) of up to 105 kcal mol with long excited-state lifetimes. We demonstrate that these complexes can catalyze C-H alkylation reactions in which the Ir carboxylate mediates both C-H abstraction and formation steps. Mechanistic, spectroscopic, and computational studies are consistent with C-H abstraction proceeding through an excited-state proton-coupled electron transfer (PCET) step. The modular nature of these Ir polypyridyl complexes establishes a foundation for designing tunable and efficient C-H functionalization catalysts based on covalent tethering of excited-state oxidants and bases.
能够使未活化的C(sp)-H键官能化的催化剂设计仍然是合成有机化学中的一个重要目标。在此,我们展示了一组新型的带有悬垂布朗斯台德碱性羧酸盐的铱多吡啶配合物,它们在可见光照射下成为有效的氢原子提取催化剂。热化学和光谱表征表明,这些激发态配合物表现出高达105 kcal mol的键解离自由能(BDFEs),且激发态寿命长。我们证明这些配合物可以催化C-H烷基化反应,其中铱羧酸盐介导C-H提取和形成步骤。机理、光谱和计算研究与通过激发态质子耦合电子转移(PCET)步骤进行的C-H提取一致。这些铱多吡啶配合物的模块化性质为基于激发态氧化剂和碱的共价连接设计可调谐且高效的C-H官能化催化剂奠定了基础。