Ortiz Robert J, Mondal Rajarshi, McCusker James K, Herbert David E
Department of Chemistry and the Manitoba Institute for Materials, University of Manitoba, 144 Dysart Road, Winnipeg, Manitoba R3T 2N2, Canada.
Department of Chemistry, Michigan State University, East Lansing, Michigan 48824, United States.
J Am Chem Soc. 2025 Jan 15;147(2):1694-1708. doi: 10.1021/jacs.4c12650. Epub 2025 Jan 6.
The ability to manipulate excited-state decay cascades using molecular structure is essential to the application of abundant-metal photosensitizers and chromophores. Ligand design has yielded some spectacular results elongating charge-transfer excited state lifetimes of Fe(II) coordination complexes, but triplet metal-centered (MC) excited states─recently demonstrated to be critical to the photoactivity of isoelectronic Co(III) polypyridyls─have to date remained elusive, with temporally isolable examples limited to the picosecond regime. With this report, we show how strong-field donors and intramolecular π-stacking can conspire to stabilize a long-lived MC excited state for a remarkable 4.1 ± 0.3 ns in fluid solution at ambient temperature. Analysis of variable-temperature time-resolved absorption data using theoretical models ranging from Arrhenius to semiclassical Marcus theory, combined with computational modeling and X-ray crystallography, reveal a Jahn-Teller stabilized excited state with a high activation barrier for ground-state recovery. The net result is a chromophore with a MC excited-state lifetime that is orders of magnitude longer than anything yet observed for an Fe(II) complex.
利用分子结构操纵激发态衰变级联的能力对于丰富金属光敏剂和发色团的应用至关重要。配体设计在延长Fe(II)配位配合物的电荷转移激发态寿命方面取得了一些显著成果,但三重态金属中心(MC)激发态——最近被证明对等电子Co(III)多吡啶的光活性至关重要——迄今为止仍然难以捉摸,时间上可分离的例子仅限于皮秒级。通过本报告,我们展示了强场供体和分子内π堆积如何共同作用,在环境温度下的流体溶液中稳定一个长寿命的MC激发态达4.1±0.3 ns。使用从阿仑尼乌斯到半经典马库斯理论的理论模型对变温时间分辨吸收数据进行分析,并结合计算建模和X射线晶体学,揭示了一个具有高基态恢复活化能垒的 Jahn-Teller 稳定激发态。最终结果是一种发色团,其MC激发态寿命比迄今观察到的任何Fe(II)配合物都要长几个数量级。