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单重态价电子态二氧化碳的光解。二、五态吸收光谱与振子分配。

Photodissociation of carbon dioxide in singlet valence electronic states. II. Five state absorption spectrum and vibronic assignment.

机构信息

Department of Chemistry, Technical University of Munich, Lichtenbergstr. 4, 85747 Garching, Germany.

出版信息

J Chem Phys. 2013 Jun 14;138(22):224107. doi: 10.1063/1.4808370.

Abstract

The absorption spectrum of CO2 in the wavelength range 120-160 nm is analyzed by means of quantum mechanical calculations performed using vibronically coupled potential energy surfaces of five singlet valence electronic states and the coordinate dependent transition dipole moment vectors. The thermally averaged spectrum, calculated for T = 190 K via Boltzmann averaging of optical transitions from many initial rotational states, accurately reproduces the experimental spectral envelope, consisting of a low and a high energy band, the positions of the absorption maxima, their FWHMs, peak intensities, and frequencies of diffuse structures in each band. Contributions of the vibronic interactions due to Renner-Teller coupling, conical intersections, and the Herzberg-Teller effect are isolated and the calculated bands are assigned in terms of adiabatic electronic states. Finally, diffuse structures in the calculated bands are vibronically assigned using wave functions of the underlying resonance states. It is demonstrated that the main progressions in the high energy band correspond to consecutive excitations of the pseudorotational motion along the closed loop of the CI seam, and progressions differ in the number of nodes along the radial mode perpendicular to the closed seam. Irregularity of the diffuse peaks in the low energy band is interpreted as a manifestation of the carbene-type "cyclic" OCO minimum.

摘要

利用通过将五个单重态价电子态的振动态耦合势能面与坐标相关的跃迁偶极矩矢量进行量子力学计算,分析了 120-160nm 波长范围内 CO2 的吸收光谱。通过玻尔兹曼从许多初始转动态的光学跃迁平均化,在 T = 190 K 下计算的热平均光谱准确地再现了实验光谱包络线,该包络线由低能和高能带组成,吸收最大值的位置、它们的半峰全宽、峰值强度以及每个带中的漫射结构的频率。由于 Renner-Teller 耦合、锥形交叉和 Herzberg-Teller 效应的振动态相互作用的贡献被隔离,并且根据绝热电子态对计算出的带进行了分配。最后,使用基础共振态的波函数对计算出的带中的漫射结构进行了振动态分配。结果表明,高能带中的主要谱线对应于沿着 CI 缝闭合环的准旋转运动的连续激发,并且沿垂直于闭合缝的径向模式的节点数不同。低能带中漫射峰的不规则性被解释为卡宾型“循环”OCO 最小值的表现。

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