Engel Nicholas, Bokarev Sergey I, Moguilevski Alexandre, Raheem Azhr A, Al-Obaidi Ruba, Möhle Tobias, Grell Gilbert, Siefermann Katrin R, Abel Bernd, Aziz Saadullah G, Kühn Oliver, Borgwardt Mario, Kiyan Igor Yu, Aziz Emad F
Joint Laboratory for Ultrafast Dynamics in Solutions and at Interfaces (JULiq), Institute of Methods for Material Development, Helmholtz-Zentrum Berlin, Albert-Einstein-Str. 15, D-12489 Berlin, Germany.
Phys Chem Chem Phys. 2017 Jun 7;19(22):14248-14255. doi: 10.1039/c7cp01288h.
Photoinduced charge transfer in transition-metal coordination complexes plays a prominent role in photosynthesis and is fundamental for light-harvesting processes in catalytic materials. However, revealing the relaxation pathways of charge separation remains a very challenging task because of the complexity of relaxation channels and ultrashort time scales. Here, we employ ultrafast XUV photoemission spectroscopy to monitor fine mechanistic details of the electron dynamics following optical ligand-to-metal charge-transfer excitation of ferricyanide in aqueous solution. XUV probe light with a time resolution of 100 fs, in combination with density functional theory employing the Dyson orbital formalism, enabled us to decipher the primary and subsequently populated electronic states involved in the relaxation, as well as their energetics on sub-picosecond timescales. We find strong evidence for the spin crossover followed by geometrical distortions due to vibronic interactions (Jahn-Teller effect) in the excited electronic states, rather than localization/delocalization dynamics, as suggested previously.
过渡金属配位络合物中的光致电荷转移在光合作用中起着重要作用,并且是催化材料中光捕获过程的基础。然而,由于弛豫通道的复杂性和超短时间尺度,揭示电荷分离的弛豫途径仍然是一项极具挑战性的任务。在此,我们采用超快XUV光电子能谱来监测水溶液中氰化铁的光学配体到金属电荷转移激发后电子动力学的精细机制细节。具有100 fs时间分辨率的XUV探测光,结合采用戴森轨道形式的密度泛函理论,使我们能够破译弛豫过程中涉及的主要和随后填充的电子态,以及它们在亚皮秒时间尺度上的能量。我们发现了有力证据,表明激发电子态中由于振动相互作用( Jahn-Teller效应)导致的自旋交叉,随后是几何畸变,而不是如先前所建议的局域化/离域化动力学。