Nowakowski Michal, Huber-Gedert Marina, Elgabarty Hossam, Kalinko Aleksandr, Kubicki Jacek, Kertmen Ahmet, Lindner Natalia, Khakhulin Dmitry, Lima Frederico A, Choi Tae-Kyu, Biednov Mykola, Schmitz Lennart, Piergies Natalia, Zalden Peter, Kubicek Katharina, Rodriguez-Fernandez Angel, Salem Mohammad Alaraby, Canton Sophie E, Bressler Christian, Kühne Thomas D, Gawelda Wojciech, Bauer Matthias
Chemistry Department and Center for Sustainable Systems Design (CSSD), Faculty of Science, Paderborn University, Warburger Straße 100, 33098, Paderborn, Germany.
Deutsches Elektronen-Synchrotron DESY, 22607, Notkestr. 85, Hamburg, Germany.
Adv Sci (Weinh). 2024 Oct;11(38):e2404348. doi: 10.1002/advs.202404348. Epub 2024 Aug 5.
Effective photoinduced charge transfer makes molecular bimetallic assemblies attractive for applications as active light-induced proton reduction systems. Developing competitive base metal dyads is mandatory for a more sustainable future. However, the electron transfer mechanisms from the photosensitizer to the proton reduction catalyst in base metal dyads remain so far unexplored. A Fe─Co dyad that exhibits photocatalytic H production activity is studied using femtosecond X-ray emission spectroscopy, complemented by ultrafast optical spectroscopy and theoretical time-dependent DFT calculations, to understand the electronic and structural dynamics after photoexcitation and during the subsequent charge transfer process from the Fe photosensitizer to the cobaloxime catalyst. This novel approach enables the simultaneous measurement of the transient X-ray emission at the iron and cobalt K-edges in a two-color experiment. With this methodology, the excited state dynamics are correlated to the electron transfer processes, and evidence of the Fe→Co electron transfer as an initial step of proton reduction activity is unraveled.
有效的光致电荷转移使分子双金属组装体作为活性光致质子还原系统具有应用吸引力。开发具有竞争力的贱金属二元体系对于更可持续的未来至关重要。然而,到目前为止,贱金属二元体系中从光敏剂到质子还原催化剂的电子转移机制尚未得到探索。使用飞秒X射线发射光谱对一种具有光催化产氢活性的铁钴二元体系进行了研究,并辅以超快光学光谱和理论含时密度泛函理论计算,以了解光激发后以及随后从铁光敏剂到钴肟催化剂的电荷转移过程中的电子和结构动力学。这种新颖的方法能够在双色实验中同时测量铁和钴K边的瞬态X射线发射。通过这种方法,激发态动力学与电子转移过程相关联,并且揭示了Fe→Co电子转移作为质子还原活性初始步骤的证据。