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Picosecond sulfur K-edge X-ray absorption spectroscopy with applications to excited state proton transfer

机译:皮秒硫K边缘X射线吸收光谱及其在激发态质子转移中的应用

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摘要

Picosecond X-ray absorption (XA) spectroscopy at the S K-edge (∼2.4 keV) is demonstrated and used to monitor excited state dynamics in a small organosulfur molecule (2-Thiopyridone, 2TP) following optical excitation. Multiple studies have reported that the thione (2TP) is converted into the thiol (2-Mercaptopyridine, 2MP) following photoexcitation. However, the timescale and photochemical pathway of this reaction remain uncertain. In this work, time-resolved XA spectroscopy at the S K-edge is used to monitor the formation and decay of two transient species following 400 nm excitation of 2TP dissolved in acetonitrile. The first transient species forms within the instrument response time (70 ps) and decays within 6 ns. The second transient species forms on a timescale of ∼400 ps and decays on a 15 ns timescale. Time-dependent density functional theory is used to identify the first and second transient species as the lowest-lying triplet states of 2TP and 2MP, respectively. This study demonstrates transient S K-edge XA spectroscopy as a sensitive and viable probe of time-evolving charge dynamics near sulfur sites in small molecules with future applications towards studying complex biological and material systems.
机译:演示了在S K边缘(〜2.4 keV)的皮秒X射线吸收(XA)光谱,并用于监测光激发后小的有机硫分子(2-硫代吡啶酮,2TP)中的激发态动态。多项研究报道,在光激发后,硫酮(2TP)被转化为硫醇(2-巯基吡啶,2MP)。然而,该反应的时间尺度和光化学途径仍然不确定。在这项工作中,时间分辨的XA光谱在S K边缘用于监测溶解在乙腈中的2TP的400 nm激发后两个瞬态物质的形成和衰减。第一瞬态物质在仪器响应时间内(70 ps)形成,并在6µns内衰减。第二种瞬态物质在约400 ps的时间尺度上形成,并在15µns的时间尺度上衰减。依赖于时间的密度泛函理论用于将第一和第二瞬态物种分别确定为2TP和2MP的最低三重态。这项研究表明瞬态S K边缘XA光谱作为小分子硫位点附近随时间变化的电荷动力学的灵敏可行的探针,并在研究复杂的生物和材料系统方面有未来的应用。

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