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Ultrafast dynamics of formation and autodetachment of a dipole-bound state in an open-shell π-stacked dimer anion.ud

机译:开壳π堆积二聚体阴离子中偶极子结合态的形成和自动分离的超快动力学。 ud

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摘要

Isolated π-stacked dimer radical anions present the simplest model of an excess electron in a π-stacked environment. Here, frequency-, angle-, and time-resolved photoelectron imaging together with electronic structure calculations have been used to characterise the π-stacked coenzyme Q0 dimer radical anion and its exited state dynamics. In the ground electronic state, the excess electron is localised on one monomer with a planar para-quinone ring, which is solvated by the second monomer in which carbonyl groups are bent out of the para-quinone ring plane. Through the π-stacking interaction, the dimer anion exhibits a number of charge-transfer (intermolecular) valence-localised resonances situated in the detachment continuum that undergo efficient internal conversion to a cluster dipole-bound state (DBS) on a ∼60 fs timescale. In turn, the DBS undergoes vibration-mediated autodetachment on a 2.0 ± 0.2 ps timescale. Experimental vibrational structure and supporting calculations assign the intermolecular dynamics to be facilitated by vibrational wagging modes of the carbonyl groups on the non-planar monomer. At photon energies ∼0.6–1.0 eV above the detachment threshold, a competition between photoexcitation of an intermolecular resonance leading to the DBS, and photoexcitation of an intramolecular resonance leading to monomer-like dynamics further illustrates the π-stacking specific dynamics. Overall, this study provides the first direct observation of both internal conversion of resonances into a DBS, and characterisation of a vibration-mediated autodetachment in real-time.
机译:孤立的π堆积的二聚体自由基阴离子是π堆积环境中过量电子的最简单模型。在这里,频率,角度和时间分辨的光电子成像以及电子结构计算已用于表征π堆积的辅酶Q0二聚体自由基阴离子及其退出态动力学。在基态电子状态下,多余的电子位于具有平面对醌环的一个单体上,该环被第二个单体溶剂化,其中羰基从对醌环平面中弯曲出来。通过π堆积相互作用,二聚阴离子在离解连续体中表现出许多电荷转移(分子间)化合价共振,在约60 fs的时间尺度上经历有效的内部转换成簇偶极结合态(DBS) 。反过来,DBS在2.0±0.2 ps的时间尺度上进行振动介导的自动分离。实验的振动结构和支持计算指定了非平面单体上羰基的振动摆动模式可促进分子间动力学。当光子能量高于脱离阈值约0.6–1.0 eV时,分子间共振的光激发导致DBS与分子内共振的光激发导致类似单体的动力学之间的竞争进一步说明了π堆积的特定动力学。总体而言,这项研究提供了对共振向DBS的内部转换以及实时表征振动介导的自动分离的首次直接观察。

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