论文标题

六氟乙酰基赛酮中的超快X射线光谱法:发色团光体物理和光谱变化电子撤回基团

Ultrafast X-ray Spectroscopy of Intersystem Crossing in Hexafluoroacetylacetone: Chromophore Photophysics and Spectral Changes in the Face of Electron Withdrawing Groups

论文作者

Haugen, Eric A., Hait, Diptarka, Scutelnic, Valeriu, Xue, Tian, Head-Gordon, Martin, Leone, Stephen R.

论文摘要

Singlet和三重态之间的跨系统交叉口代表了光化学过程中的关键放松途径。在此,我们在碳K-EDGE上与超快X射线瞬态吸收光谱探测了六氟 - 乙酰基烯酮中的间交叉。我们观察到具有266 nm UV光激发后的激发态动力学,使用元素和位点特异性,使用高谐波生成产生的宽带软X射线脉冲,具有元素和位点特异性。将这些结果与根据轨道优化密度功能理论方法计算得出的X射线光谱进行了比较。发现电子通过增强源自不同碳原子的特征之间的分离来使X射线吸收光谱脱离氟原子。这有助于阐明发色团的结构和电子动力学。碳K-Edge的核心到价共振的演变表明,$^1nπ^{*} $(S $ _1 $)和$^3ππ^{*} $(t $ _1 $)之间的超快人口转移在$ 1.6 \ pm0.4 $ ps Timescale时,与1.5 ps compoins compose [是。化学Soc。 139,16576(2017)]。因此,末端氟化似乎对乙酰丙酮发色团的交叉交叉速率几乎没有影响。此外,通过将实验性瞬态X射线光谱与理论进行比较,在激发态动力学中阐明了氢键打开和扭曲的旋转异构体的重要作用。

Intersystem crossings between singlet and triplet states represent a crucial relaxation pathway in photochemical processes. Herein, we probe the intersystem crossing in hexafluoro-acetylacetone with ultrafast X-ray transient absorption spectroscopy at the carbon K-edge. We observe the excited state dynamics following excitation with 266 nm UV light to the $^1ππ^{*}$ (S$_2$) state with element and site-specificity using a broadband soft X-ray pulse produced by high harmonic generation. These results are compared to X-ray spectra computed from orbital optimized density functional theory methods. It is found that the electron withdrawing fluorine atoms decongest the X-ray absorption spectrum by enhancing separation between features originating from different carbon atoms. This facilitates the elucidation of structural and electronic dynamics at the chromophore. The evolution of the core-to-valence resonances at the carbon K-edge reveals an ultrafast population transfer between the $^1nπ^{*}$ (S$_1$) and $^3ππ^{*}$ (T$_1$) states on a $1.6\pm0.4$ ps timescale, which is similar to the 1.5 ps timescale earlier observed for acetylacetone [J. Am. Chem. Soc. 139, 16576 (2017)]. It therefore appears that terminal fluorination has little influence on the intersystem crossing rate of the acetylacetone chromophore. In addition, the significant role of hydrogen-bond opened and twisted rotational isomers is elucidated in the excited state dynamics by comparison of the experimental transient X-ray spectra with theory.

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