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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Ultrafast relaxation dynamics of electronically excited piperidine: ionization signatures of Rydberg/valence evolution
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Ultrafast relaxation dynamics of electronically excited piperidine: ionization signatures of Rydberg/valence evolution

机译:电子激发哌啶的超快弛豫动力学:里德堡/价演化的电离特征

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摘要

We have investigated the electronic relaxation dynamics of gas-phase piperidine (a secondary aliphatic amine) using time-resolved photoelectron imaging. Following 200 nm excitation, spectrally sharp and highly anisotropic photoelectron data reveal ultrafast (60 fs) internal conversion between the initially excited 3p(x) Rydberg state and the lower-lying 3s Rydberg state, mediated by the evolution of n sigma* valence character along the 3p(x) N-C bond. This behaviour is in good agreement with previously reported findings for several tertiary aliphatic amines. In contrast to the these systems, however, much broader photoelectron signals exhibiting only very small angular anisotropy and two distinct decay timescales (180 fs and 1.7 ps) were also observed. As confirmed by our supporting calculations, this is attributable to ns* valence character now evolving along the N-H stretching coordinate within the 3s Rydberg state as the molecule starts dissociating to yield H atom photoproducts in conjunction with ground state piperidinyl radicals. By analogy with systems such as ammonia and morpholine, we conclude this event may occur either promptly or, alternatively, via a ''frustrated'' process where the system repeatedly traverses the upper cone of a conical intersection with the ground state until the required region of phase space is sampled to facilitate non-adiabatic population transfer. Our findings reveal the role of several different nuclear coordinate motions in driving stepwise internal conversion across multiple potential energy surfaces and the distinct photoionization signatures that are associated with these processes.
机译:我们已经研究了使用时间分辨光电子成像的气相哌啶(仲脂肪胺)的电子弛豫动力学。在200 nm激发后,光谱清晰且高度各向异性的光电子数据揭示了最初激发的3p(x)Rydberg态和较低的3s Rydberg态之间的超快(60 fs)内部转换,这是由nσ*价态沿3p(x)NC键。该行为与先前报道的几种叔脂肪胺的发现非常吻合。然而,与这些系统相比,更宽的光电子信号仅表现出非常小的角度各向异性,并且还观察到两个不同的衰减时间尺度(180 fs和1.7 ps)。正如我们的支持计算所证实的,这可归因于ns *价态现在随着3s Rydberg态在N-H拉伸坐标上的演化而演变,因为该分子开始与基态哌啶基基团解离生成H原子光产物。通过类似于氨和吗啉等系统,我们得出结论,此事件可能迅速发生,或者通过“沮丧”过程发生,在该过程中,系统反复遍历圆锥形相交点的上锥体与基态,直到到达所需区域对相空间进行采样以促进非绝热种群转移。我们的发现揭示了几种不同的核坐标运动在驱动跨多个势能面的逐步内部转换以及与这些过程相关的独特的光电离签名中的作用。

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