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双色双激光闪光光解及脉冲辐解-激光闪光光解过程中萘二聚体自由基阳离子的光解离

Photodissociation of naphthalene dimer radical cation during the two-color two-laser flash photolysis and pulse radiolysis-laser flash photolysis.

作者信息

Cai Xichen, Tojo Sachiko, Fujitsuka Mamoru, Majima Tetsuro

机构信息

The Institute of Scientific and Industrial Research (SANKEN), Osaka University, Mihogaoka 8-1, Ibaraki, Osaka 567-0047, Japan.

出版信息

J Phys Chem A. 2006 Aug 3;110(30):9319-24. doi: 10.1021/jp062707z.

Abstract

Photodissociation of naphthalene (Np) dimer radical cation (Np2*+) to give naphthalene radical cation (Np*+) and Np and the subsequent regeneration of Np2*+ by the dimerization of Np*+ and Np were directly observed during the two-color two-laser flash photolysis in solution at room temperature. When Np2*+ was excited at the charge-resonance (CR) band with the 1064-nm laser, the bleaching and recovery of the transient absorption at 570 and 1000 nm, assigned to the local excitation (LE) and CR bands of Np2*+, respectively, were observed together with the growth and decay of the transient absorption at 685 nm, assigned to Np*+. The dissociation of Np2*+ proceeds via a one-photon process within the 5-ns laser flash to give Np*+ and Np in the quantum yield of 3.2 x 10(-3) and in the chemical yield of 100%. The recovery time profiles of Np2*+ at 570 and 1000 nm were equivalent to the decay time profile of Np*+ at 685 nm, suggesting that the dimerization of Np*+ and Np occurs to regenerate Np2*+ in 100% yield. Similar experimental results of the photodissociation and regeneration of Np2*+ were observed during the pulse radiolysis-laser flash photolysis of Np in 1,2-dichloroethane. The photodissociation mechanism can be explained based on the crossing between two potential surfaces of the excited-state Np2*+ and ground-state Np*+.

摘要

在室温下的溶液中进行双色双激光闪光光解时,直接观察到萘(Np)二聚体自由基阳离子(Np2*+)光解离生成萘自由基阳离子(Np*+)和Np,随后Np*+与Np二聚化再生Np2*+。当用1064 nm激光在电荷共振(CR)波段激发Np2*+时,观察到570和1000 nm处瞬态吸收的漂白和恢复,分别归因于Np2*+的局域激发(LE)和CR波段,同时还观察到685 nm处归因于Np*+的瞬态吸收的增长和衰减。Np2*+的解离在5 ns激光闪光内通过单光子过程进行,生成Np*+和Np,量子产率为3.2×10(-3),化学产率为100%。570和1000 nm处Np2*+的恢复时间曲线与685 nm处Np*+的衰减时间曲线相当,这表明Np*+与Np二聚化以100%的产率再生Np2*+。在1,2 - 二氯乙烷中对Np进行脉冲辐解 - 激光闪光光解时,观察到了Np2*+光解离和再生的类似实验结果。光解离机制可以基于激发态Np2*+和基态Np*+的两个势能面之间的交叉来解释。

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