Department of Chemistry, Princeton University, Princeton, New Jersey 08544, United States.
J Am Chem Soc. 2023 Jun 14;145(23):12499-12508. doi: 10.1021/jacs.2c13249. Epub 2023 Jun 1.
One-electron reduced photosensitizers have been invoked as crucial intermediates in photoredox catalysis, including multiphoton excitation and electrophotocatalytic processes. However, such reduced chromophores have been less investigated, limiting mechanistic studies of their associated electron transfer processes. Here, we report a total of 11 different examples of isolable singly reduced iridium chromophores. Chemical reduction of a cyclometalated iridium complex with potassium graphite affords a 19-electron species. Structural and spectroscopic characterizations reveal a ligand-centered reduction product. The reduced chromophore absorbs a wide range of light from ultraviolet to near-infrared and exhibits photoinduced bimolecular electron transfer reactivity. These studies shed light on elusive reduced iridium chromophores in both ground and excited states, providing opportunities to investigate a commonly invoked intermediate in photoredox catalysis.
单电子还原的光敏剂已被认为是光还原催化中的关键中间体,包括多光子激发和光电催化过程。然而,这种还原的生色团研究较少,限制了其相关电子转移过程的机理研究。在这里,我们总共报道了 11 种不同的可分离的单还原铱生色团的例子。用石墨钾还原环金属化铱配合物得到 19 个电子的物种。结构和光谱表征揭示了配体中心还原产物。还原生色团吸收从紫外线到近红外的广泛范围的光,并表现出光诱导双分子电子转移反应性。这些研究揭示了在基态和激发态中难以捉摸的还原铱生色团,为研究光还原催化中常见的中间体提供了机会。