Stanford PULSE Institute, SLAC National Accelerator Laboratory, 2575 Sand Hill Road, Menlo Park, CA 94025, USA.
Department of Chemistry, Norwegian University of Science and Technology, NO-7491 Trondheim, Norway.
Faraday Discuss. 2021 May 27;228(0):555-570. doi: 10.1039/d0fd00112k.
We present the first investigation of excited state dynamics by resonant Auger-Meitner spectroscopy (also known as resonant Auger spectroscopy) using the nucleobase thymine as an example. Thymine is photoexcited in the UV and probed with X-ray photon energies at and below the oxygen K-edge. After initial photoexcitation to a ππ* excited state, thymine is known to undergo internal conversion to an nπ* excited state with a strong resonance at the oxygen K-edge, red-shifted from the ground state π* resonances of thymine (see our previous study Wolf, et al., Nat. Commun., 2017, 8, 29). We resolve and compare the Auger-Meitner electron spectra associated both with the excited state and ground state resonances, and distinguish participator and spectator decay contributions. Furthermore, we observe simultaneously with the decay of the nπ* state signatures the appearance of additional resonant Auger-Meitner contributions at photon energies between the nπ* state and the ground state resonances. We assign these contributions to population transfer from the nπ* state to a ππ* triplet state via intersystem crossing on the picosecond timescale based on simulations of the X-ray absorption spectra in the vibrationally hot triplet state. Moreover, we identify signatures from the initially excited ππ* singlet state which we have not observed in our previous study.
我们首次通过共振俄歇-迈特纳光谱学(也称为共振俄歇光谱学)研究了激发态动力学,以碱基胸腺嘧啶为例。胸腺嘧啶在紫外光下被光激发,并用 X 射线光子能量在氧 K 边和氧 K 边以下进行探测。在最初被激发到ππ激发态后,胸腺嘧啶被已知会经历内部转换到 nπ激发态,在氧 K 边处有一个强烈的共振,从胸腺嘧啶的基态π共振红移(参见我们之前的研究 Wolf 等人,Nat.Commun.,2017,8,29)。我们解析并比较了与激发态和基态共振相关的俄歇-迈特纳电子光谱,并区分了参与者和旁观者衰减贡献。此外,我们同时观察到 nπ态衰变的特征,以及在 nπ态和基态共振之间的光子能量处出现额外的共振俄歇-迈特纳贡献。我们基于在振动热三重态中 X 射线吸收光谱的模拟,将这些贡献分配给通过系间穿越从 nπ态到ππ三重态的人口转移。此外,我们还识别出了在我们之前的研究中未观察到的初始激发的ππ单线态的特征。