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Excited States of Bromopyrimidines Probed by VUV Photoabsorption Spectroscopy and Theoretical Calculations

机译:VUV光学吸引光谱和理论计算探测的溴嘧啶激发态

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摘要

We report absolute photoabsorption cross sections for gas-phase 2- and 5-bromopyrimidine in the 3.7–10.8 eV energy range, in a joint theoretical and experimental study. The measurements were carried out using high-resolution vacuum ultraviolet synchrotron radiation, with quantum chemical calculations performed through the nuclear ensemble approach in combination with time-dependent density functional theory, along with additional Franck–Condon Herzberg–Teller calculations for the first absorption band (3.7–4.6 eV). The cross sections of both bromopyrimidines are very similar below 7.3 eV, deviating more substantially from each other at higher energies. In the 7.3–9.0 eV range where the maximum cross-section is found, a single and broad band is observed for 5-bromopyrimidine, while more discernible features appear in the case of 2-bromopyrimidine. Several π* ← π transitions account for the most intense bands, while weaker ones are assigned to transitions involving the nitrogen and bromine lone pairs, the antibonding σ*Br orbital, and the lower-lying Rydberg states. A detailed comparison with the available photo-absorption data of bromobenzene is also reported. We have found significant differences regarding the main absorption band, which is more peaked in bromobenzene, becoming broader and shifting to higher energies in both bromopyrimidines. In addition, there is a significant suppression of vibrational structures and of Rydberg states in the pair of isomers, most noticeably for 2-bromopyrimidine.
机译:在联合理论和实验研究中,我们在3.7-10.8 ev能量范围内报告气相2-和5-溴嘧啶的绝对光吸收横截面。使用高分辨率真空紫外同步同步辐射进行测量,通过核心综合方法与时间依赖密度泛的功能理论相结合进行量子化学计算,以及用于第一吸收带的额外FRANCK-CONDON Herzberg-Talker计算( 3.7-4.6 ev)。两种溴嘧啶的横截面在7.3eV中非常相似,在更高的能量下彼此更基本地偏离。在发现最大横截面的7.3-9.0EV范围内,观察到5-溴嘧啶的单个和宽带,而在2-溴嘧啶的情况下会出现更具可辨别的特征。几π*←π转换对于最强烈的带,而较弱的频带被分配给涉及氮气和溴唯一对的过渡,抗溴σ* Br轨道和下躺的梁尔格状态。还报道了与可用的溴苯并的可​​用光吸收数据进行了详细的比较。我们已经发现关于主吸收带的显着差异,其在溴苯苯苯苯苯苯苯苯苯苯苯吡啉中更峰值,在溴嘧啶中的更高的能量变化。此外,在一对异构体中具有显着抑制振动结构和rydberg状态,最明显用于2-溴嘧啶。

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