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首页> 外文期刊>The Journal of Chemical Physics >Excited state dynamics of liquid water: Insight from the dissociation reaction following two-photon excitation
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Excited state dynamics of liquid water: Insight from the dissociation reaction following two-photon excitation

机译:液态水的激发态动力学:双光子激发后的解离反应的启示

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摘要

The authors use transient absorption spectroscopy to monitor the ionization and dissociation products following two-photon excitation of pure liquid water.The primary decay mechanism changes from dissociation at an excitation energy of 8.3 eV to ionization at 12.4 eV.The two channels occur with similar yield for an excitation energy of 9.3 eV.For the lowest excitation energy,the transient absorption at 267 nm probes the geminate recombination kinetics of the H and OH fragments,providing a window on the dissociation dynamics.Modeling the OH geminate recombination indicates that the dissociating H atoms have enough kinetic energy to escape the solvent cage and one or two additional solvent shells.The average initial separation of H and OH fragments is 0.7+-0.2 nm.Our observation suggests that the hydrogen bonding environment does not prevent direct dissociation of an O-H bond in the excited state.We discuss the implications of our measurement for the excited state dynamics of liquid water and explore the role of those dynamics in the ionization mechanism at low excitation energies.
机译:作者使用瞬态吸收光谱法监测纯液体水的双光子激发后的电离和离解产物,其主要衰减机理从激发能8.3 eV的离解变为12.4 eV的电离,两个通道的收率相近。对于9.3 eV的激发能,对于最低的激发能,在267 nm处的瞬态吸收探测了H和OH片段的萌发重组动力学,为解离动力学提供了一个窗口。原子具有足够的动能以逃离溶剂笼和一两个额外的溶剂壳.H和OH片段的平均初始间隔为0.7 + -0.2 nm。我们的观察结果表明,氢键合环境不能阻止OH的直接解离我们讨论了测量对液体水激发态动力学的影响r并探讨了这些动力学在低激发能下的电离机理中的作用。

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