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Molecular Dynamics Simulations of Perylene and Tetracene Librations: Comparison With Femtosecond Upconversion Data

机译:ylene和四苯环的分子动力学模拟:与飞秒上转换数据的比较

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摘要

In a prior manuscript by Xu et al. [Xu, J.; Shen, X.; Knutson, J. R. J. Phys. Chem. A >2003, 107, 8383], time-resolved fluorescence emission anisotropy measurements were performed on perylene and tetracene in hexadecane using an upconversion technique with ~100 fs resolution. The anisotropy transients contained previously unseen decay terms of ~300 fs. In perylene, their amplitude corresponded to the “ro defect” that has gathered interest over decades. We ascribed this term to a predominantly in-plane libration. In this manuscript, we present molecular dynamics simulations for the motions of perylene and tetracene using the CHARMm molecular dynamics program (version c29b2). Both rotational correlation functions contain subpicosecond decay terms that resemble experimental anisotropy decays. It was suggested that the ro defect might arise from excited-state distortions of perylene, so we conducted quantum mechanical calculations to show that such distortion does not significantly displace the oscillators. We compare the case of perylene, with a strongly allowed singlet emission transition, to that of the weakly allowed tetracene transition. In perylene, motion alone can explain subpicosecond anisotropy decay, while tetracene decay also contains vibrational coupling terms, as previously reported by Sarkar et al. [Sarkar, N.; Takeuchi, S.; Tahara, T. J. Phys. Chem. A >1999, 103, 4808].
机译:在徐等人的先前手稿中。 [徐J.沉X. Knutson,J.R. J. Phys。化学[strong> 2003 ,107,8383]使用十六烷中的per转换技术,以〜100 fs的分辨率对time和并四苯中的时间分辨荧光发射各向异性进行了测量。各向异性瞬变包含以前看不见的衰减项,约为300 fs。在per中,其振幅对应于数十年来引起人们关注的“ ro缺陷”。我们将此术语归因于平面内解放。在本手稿中,我们使用CHARMm分子动力学程序(版本c29b2)介绍了ylene和并四苯的运动的分子动力学模拟。两个旋转相关​​函数都包含类似于实验各向异性衰减的亚皮秒衰减项。有人提出,ro缺陷可能是由per的激发态畸变引起的,因此我们进行了量子力学计算,以表明这种畸变不会明显取代振荡器。我们将of的情况(具有强烈允许的单线态发射跃迁)与弱容许的并四苯离子跃迁进行了比较。如Sarkar等人先前报道,在per中,仅运动就可以解释亚皮秒各向异性衰减,而并四苯衰减还包含振动耦合项。 [北卡罗来纳州萨卡;竹内Tahara,T.J.Phys。化学A > 1999 ,103,4808]。

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