Cleary Patricia A, Dempsey Logan P, Murray Craig, Lester Marsha I, Kłos Jacek, Alexander Millard H
Department of Chemistry, University of Pennsylvania, Philadelphia, Pennsylvania 19104-6323, USA.
J Chem Phys. 2007 May 28;126(20):204316. doi: 10.1063/1.2730505.
We report a combined experimental and theoretical investigation of the nonreactive quenching channel resulting from electronic quenching of OH A 2Sigma+ by molecular hydrogen. The experiments utilize a pump-probe scheme to determine the OH X 2Pi population distribution following collisional quenching in a pulsed supersonic expansion. The pump laser excites OH A 2Sigma+ (nu'=0, N'=0), which has a significantly reduced fluorescence lifetime due to quenching by H2. The probe laser monitors the OH X 2Pi (nu", N") population via laser-induced fluorescence on various A-X transitions under single collision conditions. The experiments reveal a high degree of rotational excitation (N") of the quenched OH X 2Pi products observed in nu"=1 and 2 as well as a pronounced propensity for quenching into the Pi(A') Lambda-doublet level. These experiments have been supplemented by extensive multireference, configuration-interaction calculations aimed at exploring the topology of the relevant potential energy surfaces. Electronic quenching of OH A 2Sigma+ by H2 proceeds through conical intersections between two potentials of A' reflection symmetry (in planar geometry) that correlate with the electronically excited A 2Sigma+ and ground X 2Pi states of OH. The conical intersections occur in high-symmetry geometries, in which the O side of OH points toward H2. Corroborating and extending earlier work of Hoffman and Yarkony [J. Chem. Phys. 113, 10091 (2000)], these calculations reveal a steep gradient away from the OH-H2 conical intersection as a function of both the OH orientation and interfragment distance. The former will give rise to a high degree of OH rotational excitation, as observed for the quenched OH X 2Pi products.
我们报告了一项关于分子氢对OH A 2Σ⁺进行电子猝灭所产生的非反应性猝灭通道的实验与理论相结合的研究。实验采用泵浦-探测方案来确定在脉冲超声速膨胀中碰撞猝灭后OH X 2Π的布居分布。泵浦激光激发OH A 2Σ⁺(ν' = 0,N' = 0),由于被H₂猝灭,其荧光寿命显著缩短。探测激光在单碰撞条件下通过各种A - X跃迁上的激光诱导荧光监测OH X 2Π(ν'',N'')的布居。实验揭示了在ν'' = 1和2中观察到的猝灭后的OH X 2Π产物具有高度的转动激发(N''),以及猝灭到Π(A')Λ - 双重态能级的明显倾向。这些实验得到了广泛的多参考组态相互作用计算的补充,旨在探索相关势能面的拓扑结构。H₂对OH A 2Σ⁺的电子猝灭通过两个具有A'反射对称性(在平面几何中)的势之间的锥形交叉进行,这两个势与OH的电子激发态A 2Σ⁺和基态X 2Π相关。锥形交叉出现在高对称几何结构中,其中OH的O侧指向H₂。这些计算证实并扩展了Hoffman和Yarkony早期的工作[《化学物理杂志》113, 10091 (2000)],揭示了作为OH取向和碎片间距离函数的远离OH - H₂锥形交叉的陡峭梯度。前者将导致猝灭后的OH X 2Π产物出现高度的OH转动激发。