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首页> 外文期刊>The Journal of Chemical Physics >Photo-assisted intersystem crossing: The predominant triplet formation mechanism in some isolated polycyclic aromatic molecules excited with pulsed lasers
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Photo-assisted intersystem crossing: The predominant triplet formation mechanism in some isolated polycyclic aromatic molecules excited with pulsed lasers

机译:光辅助的系统间穿越:某些独立的多环芳族分子被脉冲激光激发的主要三线态形成机理

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摘要

Naphthalene, anthracene, and phenanthrene are shown to have very long-lived triplet lifetimes when the isolated molecules are excited with nanosecond pulsed lasers resonant with the lowest singlet state. For naphthalene, triplet state populations are created only during the laser pulse, excluding the possibility of normal intersystem crossing at the one photon level, and all molecules have triplet lifetimes greater than hundreds of microseconds, similar to the behavior previously reported for phenylacetylene. Although containing 7-12 thousand cm(-1) of vibrational energy, the triplet molecules have ionization thresholds appropriate to vibrationless T1 states. The laser power dependences (slopes of log-log power plots) of the excited singlet and triplet populations are about 0.7 for naphthalene and about 0.5 for anthracene. Kinetic modeling of the power dependences successfully reproduces the experimental results and suggests that the triplet formation mechanism involves an enhanced spin orbit coupling caused by sigma character in states at the 2-photon level. Symmetry adapted cluster-configuration interaction calculations produced excited state absorption spectra to provide guidance for estimating kinetic rates and the sigma character present in higher electronic states. It is concluded that higher excited state populations are significant when larger molecules are excited with pulsed lasers and need to be taken into account whenever discussing the molecular photodynamics (C) 2015 AIP Publishing LLC.
机译:当使用共振到最低单重态的纳秒脉冲激光激发分离的分子时,萘,蒽和菲的三重态寿命很长。对于萘,三重态仅在激光脉冲期间产生,不包括在一个光子水平上正常的系统间交叉的可能性,并且所有分子的三重态寿命都大于数百微秒,这与先前报道的苯乙炔的行为相似。虽然包含7-12000 cm(-1)的振动能量,但三重态分子的电离阈值适合无振动的T1状态。激发的单线态和三线态族的激光功率依赖性(对数-对数功率曲线的斜率)对于萘约为0.7,对于蒽约为0.5。功率依赖性的动力学模型成功地再现了实验结果,并表明三重态形成机理涉及在2光子水平的状态下由σ特性引起的增强的自旋轨道耦合。对称适应的簇-构型相互作用计算产生了激发态吸收光谱,从而为估算高电子态中的动力学速率和西格玛特性提供了指导。结论是,当较大的分子被脉冲激光激发时,较高的激发态种群是重要的,每当讨论分子光动力学(C)2015 AIP Publishing LLC时,都应考虑到这一点。

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