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从头算静态和分子动力学研究顺式和反式 4-苯乙烯基吡啶光开关的吸收光谱。

Ab initio static and molecular dynamics study of the absorption spectra of the 4-styrylpyridine photoswitch in its cis and trans forms.

机构信息

Faculté des Sciences, Université de Genève, 30 quai Ernest-Ansermet, CH-1211 Genève 4, Switzerland.

出版信息

Phys Chem Chem Phys. 2010 Jun 21;12(23):6107-23. doi: 10.1039/b920850j. Epub 2010 Apr 13.

Abstract

We report a thorough investigation of the absorption spectra of the cis and trans isomers of the 4-styrylpyridine photoswitch based on TDDFT calculations. The spectra of both isomers were analysed first from the results of excitation calculations performed on their optimised geometries. The main absorption band of the cis isomer is thus predicted to be due to the S(0)--> S(1) and S(0)--> S(2) transitions, while the main absorption band of the trans isomer is predicted to originate exclusively from the S(0)--> S(1) transition. The convolution of the calculated oscillator strengths with Gaussians helped mimic the broadening of the electronic transitions. However, it proved necessary to use Gaussians with a large full width at half maximum of 5000 cm(-1); and, compared to experiment, the calculated main absorption bands of the two isomers are significantly red-shifted and far too symmetric. Consequently, as required for the detailed analysis of the finite-temperature absorption spectrum of a molecule as flexible as 4-styrylpyridine, the influence of the thermal fluctuations has been taken into account by calculating the spectra as time averages over Car-Parrinello molecular dynamics trajectories. For both isomers, this led to a noticeable improvement in the relative positions of the calculated and experimental main absorption bands, and the asymmetry of the calculated bands brings them in better agreement with the experimental ones. Furthermore, these last results show that, actually, the S(0)--> S(1) and S(0)--> S(2) transitions both contribute significantly to the finite-temperature main absorption bands of the two isomers. Finally, in order to also take the vibrational broadening into account, the Franck-Condon factors of the relevant vibrations were calculated within the displaced harmonic oscillator approximation. By thus taking both the thermal and the vibrational broadening into account for the calculation of the absorption bands, the agreement between experiment and theory could be further improved.

摘要

我们报道了基于 TDDFT 计算对 4-苯乙烯基吡啶光开关的顺式和反式异构体的吸收光谱的全面研究。首先根据优化后的几何结构进行激发计算的结果分析了两种异构体的光谱。因此,顺式异构体的主要吸收带预计归因于 S(0)-->S(1) 和 S(0)-->S(2) 跃迁,而反式异构体的主要吸收带预计仅源自 S(0)-->S(1) 跃迁。通过将计算得到的振子强度与高斯函数卷积,可以模拟电子跃迁的展宽。然而,事实证明,需要使用半最大值全宽为 5000cm(-1)的大高斯函数;与实验相比,两种异构体的计算主要吸收带明显红移且过于对称。因此,正如对像 4-苯乙烯基吡啶这样灵活的分子的有限温度吸收光谱进行详细分析所要求的那样,通过在 Car-Parrinello 分子动力学轨迹上计算时间平均值来考虑热波动的影响。对于两种异构体,这导致计算和实验主要吸收带的相对位置有了明显改善,并且计算带的不对称性使它们与实验带更加吻合。此外,这些最后结果表明,实际上,S(0)-->S(1) 和 S(0)-->S(2) 跃迁都对两种异构体的有限温度主要吸收带贡献显著。最后,为了考虑振动展宽,在位移谐振子近似下计算了相关振动的 Franck-Condon 因子。通过在吸收带的计算中同时考虑热和振动展宽,可以进一步改善实验与理论之间的一致性。

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