Jay Raphael M, Norell Jesper, Eckert Sebastian, Hantschmann Markus, Beye Martin, Kennedy Brian, Quevedo Wilson, Schlotter William F, Dakovski Georgi L, Minitti Michael P, Hoffmann Matthias C, Mitra Ankush, Moeller Stefan P, Nordlund Dennis, Zhang Wenkai, Liang Huiyang W, Kunnus Kristjan, Kubiček Katharina, Techert Simone A, Lundberg Marcus, Wernet Philippe, Gaffney Kelly, Odelius Michael, Föhlisch Alexander
Institut für Physik und Astronomie , Universität Potsdam , 14476 Potsdam , Germany.
Department of Physics , Stockholm University , Albanova University Center , 10691 Stockholm , Sweden.
J Phys Chem Lett. 2018 Jun 21;9(12):3538-3543. doi: 10.1021/acs.jpclett.8b01429. Epub 2018 Jun 14.
Soft X-ray spectroscopies are ideal probes of the local valence electronic structure of photocatalytically active metal sites. Here, we apply the selectivity of time-resolved resonant inelastic X-ray scattering at the iron L-edge to the transient charge distribution of an optically excited charge-transfer state in aqueous ferricyanide. Through comparison to steady-state spectra and quantum chemical calculations, the coupled effects of valence-shell closing and ligand-hole creation are experimentally and theoretically disentangled and described in terms of orbital occupancy, metal-ligand covalency, and ligand field splitting, thereby extending established steady-state concepts to the excited-state domain. π-Back-donation is found to be mainly determined by the metal site occupation, whereas the ligand hole instead influences σ-donation. Our results demonstrate how ultrafast resonant inelastic X-ray scattering can help characterize local charge distributions around catalytic metal centers in short-lived charge-transfer excited states, as a step toward future rationalization and tailoring of photocatalytic capabilities of transition-metal complexes.
软X射线光谱是光催化活性金属位点局部价电子结构的理想探针。在此,我们将铁L边的时间分辨共振非弹性X射线散射的选择性应用于水溶液中铁氰化物光激发电荷转移态的瞬态电荷分布。通过与稳态光谱和量子化学计算进行比较,价壳层闭合和配体空穴产生的耦合效应在实验和理论上得以解开,并根据轨道占据、金属-配体共价性和配体场分裂进行描述,从而将已确立的稳态概念扩展到激发态领域。发现π-反馈主要由金属位点占据决定,而配体空穴则影响σ-给予。我们的结果表明,超快共振非弹性X射线散射有助于表征短寿命电荷转移激发态中催化金属中心周围的局部电荷分布,这是迈向未来合理化和定制过渡金属配合物光催化能力的重要一步。