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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Modeling the Spectroscopy of the Lowest Excited Singlet State of cis, trans-1,3,5,7-Octatetraene: The Role of Symmetry Breaking and Vibronic Interactions
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Modeling the Spectroscopy of the Lowest Excited Singlet State of cis, trans-1,3,5,7-Octatetraene: The Role of Symmetry Breaking and Vibronic Interactions

机译:建模的最低兴奋的单重态的顺式,反式,1,3,5,7-八辛烯的光谱:对称性破坏和振动相互作用的作用。

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摘要

The effects of the introduction of a cis linkage in the simplest polyenic chain containing both a cis and a trans bond on its spectroscopy are studied by using extensive ab initio calculations of the vibronically induced transition moments to the lowest excited singlet state and the first- and second-order vibronic coupling matrix elements between the lowest electronic states. It is shown that the effect of lowering the symmetry from C_(2h) to C_s is less important than that of vibronic coupling between the lower electronic states. As a result, the S_1 <- S_0 excitation spectrum is found to be dominated by bands arising from Heraberg-Teller borrowing. Support for this conclusion is found in the comparison of the theoretically predicted spectrum with excitation spectra in the solid state and by calculation of the first-order vibronic coupling matrix elements between S_2 and S_2. The well-known S_O-S_1 coupling, which leads to the frequency inversion of the completely in-phase C=C bond stretching vibration between the two states in all-trans polyenes, is shown to spread over several C=C bond stretching vibrations. Finally, it is found that the second-order S_1-S_2 couplings are not particularly affected in the isomerized molecule, in agreement with previous calculations that showed them in all-transoctatetraene to be linked to stringlike behavior.
机译:通过使用大量的从头算来计算由玻璃纤维诱导的跃迁到最低激发单重态以及第一和第二个单重态的跃迁,研究了在同时包含顺式和反式键的最简单多烯链中引入顺式键合对其光谱的影响。最低电子状态之间的二阶振动耦合矩阵元素。结果表明,将对称性从C_(2h)降低到C_s的作用不如低电子状态之间的振动耦合作用重要。结果,发现S_1 <-S_0激发光谱受Heraberg-Teller借入引起的谱带的支配。通过将理论预测光谱与固态激发光谱进行比较,并通过计算S_2和S_2之间的一阶振动耦合矩阵元素,可以找到这一结论的支持。众所周知,S_O-S_1耦合导致全反式多烯中两个状态之间完全同相的C = C键拉伸振动的频率反转,并且在多个C = C键拉伸振动中扩散。最后,发现在异构化的分子中二阶S_1-S_2偶联没有特别的影响,这与先前的计算结果一致,先前的计算表明它们在全反辛酸酯中与线状行为有关。

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