Kellogg Michael S, Mencke Austin R, Muniz Collin N, Nattikallungal Thabassum A, Cardoso-Delgado Fabiola, Baluyot-Reyes Nina, Sewell Marielle, Bird Matthew J, Bradforth Stephen E, Thompson Mark E
Department of Chemistry, University of Southern California, Los Angeles, California 90089, United States.
Department of Chemistry, University of California, Riverside, California 92521, United States.
J Phys Chem C Nanomater Interfaces. 2024 Apr 12;128(16):6621-6635. doi: 10.1021/acs.jpcc.4c01994. eCollection 2024 Apr 25.
A series of steady-state and time-resolved spectroscopies were performed on a set of eight carbene-metal-amide (cMa) complexes, where M = Cu and Au, that have been used as photosensitizers for photosensitized electrocatalytic reactions. Using ps-to-ns and ns-to-ms transient absorption spectroscopies (psTA and nsTA, respectively), the excited-state kinetics from light absorption, intersystem crossing (ISC), and eventually intermolecular charge transfer were thoroughly characterized. Using time-correlated single photon counting (TCSPC) and psTA with a thermally activated delayed fluorescence (TADF) model, the variation in intersystem crossing (ISC), ( → ) rates (∼3-120 × 10 s), and Δ values (73-115 meV) for these compounds were fully characterized, reflecting systematic changes to the carbene, carbazole, and metal. The psTA additionally revealed an early time relaxation (rate ∼0.2-0.8 × 10 s) attributed to solvent relaxation and vibrational cooling. The nsTA experiments for a gold-based cMa complex demonstrated efficient intermolecular charge transfer from the excited cMa to an electron acceptor. Pulse radiolysis and bulk electrolysis experiments allowed us to identify the character of the transient excited states as ligand-ligand charge transfer as well as the spectroscopic signature of oxidized and reduced forms of the cMa photosensitizer.
对一组八个卡宾-金属-酰胺(cMa)配合物进行了一系列稳态和时间分辨光谱实验,其中M = Cu和Au,这些配合物已被用作光催化电化学反应的光敏剂。分别使用皮秒到纳秒和纳秒到毫秒瞬态吸收光谱(分别为psTA和nsTA),对光吸收、系间窜越(ISC)以及最终的分子间电荷转移过程中的激发态动力学进行了全面表征。使用时间相关单光子计数(TCSPC)和具有热激活延迟荧光(TADF)模型的psTA,对这些化合物的系间窜越(ISC)、(→)速率(约3 - 120×10 s)和Δ值(73 - 115 meV)的变化进行了充分表征,反映了卡宾、咔唑和金属的系统性变化。psTA还揭示了归因于溶剂弛豫和振动冷却的早期时间弛豫(速率约0.2 - 0.8×10 s)。对一种基于金的cMa配合物的nsTA实验表明,激发的cMa向电子受体发生了有效的分子间电荷转移。脉冲辐解和本体电解实验使我们能够确定瞬态激发态的特征为配体-配体电荷转移以及cMa光敏剂氧化态和还原态的光谱特征。