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通过皮秒时间分辨红外光谱探测苯酚(+)-稀有气体(Rg = Ar,Kr)二聚体中光电离诱导的π↔H位点转换动力学。

Photoionization-induced π↔ H site switching dynamics in phenol(+)-Rg (Rg = Ar, Kr) dimers probed by picosecond time-resolved infrared spectroscopy.

作者信息

Miyazaki Mitsuhiko, Sakata Yuri, Schütz Markus, Dopfer Otto, Fujii Masaaki

机构信息

Laboratory for Chemistry and Life Science, Institute of Innovative Research, Tokyo Institute of Technology, Yokohama 226-8503, Japan.

出版信息

Phys Chem Chem Phys. 2016 Sep 21;18(35):24746-54. doi: 10.1039/c6cp05016f. Epub 2016 Aug 23.

Abstract

The ionization-induced π↔ H site switching reaction in phenol(+)-Rg (PhOH(+)-Rg) dimers with Rg = Ar and Kr is traced in real time by picosecond time-resolved infrared (ps-TRIR) spectroscopy. The ps-TRIR spectra show the prompt appearance of the non-vanishing free OH stretching band upon resonant photoionization of the π-bound neutral clusters, and the delayed appearance of the hydrogen-bonded (H-bonded) OH stretching band. This result directly proves that the Rg ligand switches from the π-bound site on the aromatic ring to the H-bonded site at the OH group by ionization. The subsequent H →π back reaction converges the dimer to a π↔ H equilibrium. This result is in sharp contrast to the single-step π→ H forward reaction in the PhOH(+)-Ar2 trimer with 100% yield. The reaction mechanism and yield strongly depend on intracluster vibrational energy redistribution. A classical rate equation analysis for the time evolutions of the band intensities of the two vibrations results in similar estimates for the time constants of the π→ H forward reaction of τ+ = 122 and 73 ps and the H →π back reaction of τ- = 155 and 188 ps for PhOH(+)-Ar and PhOH(+)-Kr, respectively. The one order of magnitude slower time constant in comparison to the PhOH(+)-Ar2 trimer (τ+ = 7 ps) is attributed to the decrease in density of states due to the absence of the second Ar in the dimer. The similar time constants for both PhOH(+)-Rg dimers are well rationalized by a classical interpretation based on the comparable potential energy surfaces, reaction pathways, and density of states arising from their similar intermolecular vibrational frequencies.

摘要

利用皮秒时间分辨红外(ps - TRIR)光谱实时追踪了苯酚阳离子(+)-稀有气体(Rg)(苯酚(+)- Rg,其中Rg = Ar和Kr)二聚体中电离诱导的π↔H位点切换反应。ps - TRIR光谱显示,在π键合中性团簇发生共振光电离后,立即出现了非零的游离OH伸缩振动带,以及氢键(H键)OH伸缩振动带的延迟出现。这一结果直接证明,Rg配体通过电离从芳香环上的π键合位点切换到OH基团上的H键合位点。随后的H→π逆向反应使二聚体达到π↔H平衡。这一结果与PhOH(+)-Ar₂三聚体中100%产率的单步π→H正向反应形成鲜明对比。反应机理和产率强烈依赖于团簇内的振动能量重新分布。对两种振动带强度随时间演化进行经典速率方程分析,得到PhOH(+)-Ar和PhOH(+)-Kr的π→H正向反应时间常数τ⁺分别为122和73 ps,H→π逆向反应时间常数τ⁻分别为155和188 ps的相似估计值。与PhOH(+)-Ar₂三聚体(τ⁺ = 7 ps)相比,时间常数慢了一个数量级,这归因于二聚体中没有第二个Ar导致的态密度降低。基于相似的分子间振动频率所产生的可比势能面、反应路径和态密度,通过经典解释很好地合理化了PhOH(+)-Rg两种二聚体相似的时间常数。

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