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首页> 外文期刊>The Journal of Chemical Physics >Geminate recombination and vibrational relaxation dynamics of aqueous chlorine dioxide: A time-resolved resonance Raman study
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Geminate recombination and vibrational relaxation dynamics of aqueous chlorine dioxide: A time-resolved resonance Raman study

机译:二氧化氯水溶液的萌发重组和振动弛豫动力学:时间分辨共振拉曼研究

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摘要

The photochemical dynamics of aqueous chlorine dioxide (OClO) are investigated using time-resolved resonance Raman spectroscopy. Stokes and anti-Stokes spectra are measured as a function of time following photoexcitation of OClO using degenerate pump and probe wavelengths at 390 nm. The temporal evolution of OClO Stokes intensity is found to be consistent with the reformation of ground-state OClO by subpicosecond geminate recombination of the primary ClO and O photofragments. Anti-Stokes intensity is observed for transitions corresponding to the symmetric stretch of OClO demonstrating that upon geminate recombination, excess vibrational energy is deposited along this coordinate. Dissipation of this energy to the surrounding solvent occurs with a time constant of similar to 9 ps. Finally, a delay in the appearance of OClO anti-Stokes intensity relative to geminate recombination is observed demonstrating that the excess vibrational energy available to OClO is initially deposited along the resonance Raman inactive asymmetric stretch coordinate with the exchange of energy between this coordinate and the symmetric stretch occurring with a time-constant of similar to 5 ps. (C) 1998 American Institute of Physics. [References: 29]
机译:使用时间分辨共振拉曼光谱研究了二氧化氯水溶液(OClO)的光化学动力学。使用退化的泵浦和探针波长在390 nm进行OClO光激发后,斯托克斯光谱和反斯托克斯光谱是随时间变化的。发现OClO Stokes强度的时间演化与通过皮秒级次主要ClO和O光碎片的皮秒级重组对基态OClO的重新形成是一致的。在对应于OClO对称拉伸的跃迁中观察到了反斯托克斯强度,这表明在进行重组时,多余的振动能量会沿着该坐标沉积。能量以大约9 ps的时间常数耗散到周围的溶剂中。最后,观察到OClO抗斯托克斯强度相对于双子重组的出现延迟,这表明OClO可用的多余振动能量最初是沿着共振拉曼非活性非对称拉伸坐标沉积的,该坐标与对称坐标之间进行能量交换发生时间大约为5 ps的拉伸。 (C)1998美国物理研究所。 [参考:29]

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