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首页> 外文期刊>Journal of Physics, B. Atomic, Molecular and Optical Physics: An Institute of Physics Journal >A study of the valence shell electronic states of pyrimidine and pyrazine by photoabsorption spectroscopy and time-dependent density functional theory calculations
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A study of the valence shell electronic states of pyrimidine and pyrazine by photoabsorption spectroscopy and time-dependent density functional theory calculations

机译:嘧啶和吡嗪的价壳电子态的光吸收光谱和时变密度泛函理论计算研究

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The valence shell electronic states of pyrimidine and pyrazine have been studied experimentally and theoretically. The absolute photoabsorption cross sections have been measured between 4 and 40 eV, using synchrotron radiation, and are dominated by prominent bands associated with intravalence transitions. In contrast, the structure due to Rydberg excitations is weak, but series have been observed converging onto the X? 2B2 or D? 2B1 limits in pyrimidine and the X? 2Ag or D? 2B3g limits in pyrazine. A comparison between the photoabsorption spectrum of pyrazine-h 4 and that for pyrazine-d4, together with calculated transition energies, has helped clarify the assignments of the 6a g→npb1u and npb2u Rydberg series. The vibrational progressions associated with these states have been assigned through analogy with those in the corresponding photoelectron band. The time-dependent version of density functional theory has been used to calculate oscillator strengths and excitation energies for the optically allowed singlet-singlet valence transitions, and also to obtain the excitation energies for electric-dipole-forbidden and/or spin-forbidden transitions. These theoretical results have allowed many of the experimentally observed bands to be assigned and provide a generally satisfactory description of the valence shell photoabsorption spectrum. Several of the prominent bands appearing above the ionization threshold can be correlated with predicted intense intravalence transitions.
机译:已通过实验和理论研究了嘧啶和吡嗪的价壳电子态。使用同步加速器辐射,在4至40 eV之间测量了绝对光吸收截面,并由与价态跃迁相关的显着谱带控制。相反,由于里德堡激发引起的结构很弱,但是已经观察到级数收敛到X′上。 2B2还是D? 2B1嘧啶和X2的限量2Ag还是D?吡嗪的限量为2B3g。比较吡嗪-h 4和吡嗪-d4的光吸收光谱,以及计算的跃迁能,有助于弄清6a g→npb1u和npb2u Rydberg系列的分配。与这些状态相关的振动进程已通过与相应光电子带中的振动进程类似的方式分配。时变形式的密度泛函理论已用于计算光学允许的单重态-单价价态跃迁的振荡器强度和激发能,并获得电偶极禁能和/或自旋禁能跃迁的激发能。这些理论结果允许分配许多实验观察到的谱带,并提供价壳光吸收光谱的总体令人满意的描述。出现在电离阈值之上的几个突出带可以与预测的强烈价态跃迁相关。

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