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首页> 外文期刊>The Journal of Chemical Physics >EARLY-TIME PHOTODISSOCIATION DYNAMICS OF CHLOROIODOMETHANE IN THE A-BAND ABSORPTION FROM RESONANCE RAMAN INTENSITY ANALYSIS
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EARLY-TIME PHOTODISSOCIATION DYNAMICS OF CHLOROIODOMETHANE IN THE A-BAND ABSORPTION FROM RESONANCE RAMAN INTENSITY ANALYSIS

机译:共振拉曼强度分析中A波段吸收中氯碘甲烷的早期光解离动力学

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We have obtained resonance Raman spectra and absolute Raman cross sections for h(2)-chloroidomethane (fourteen excitation wavelengths between 200 nm and 355 nm) and d(2)-chloroiodomethane (for 282.4 nm excitation) in cyclohexane solution. Most of the intensity in the A-band resonance Raman spectra appears in the nominal C-I stretch overtones progression and combination bands of the nominal C-I stretch overtones with the fundamentals of the CH2 wag, CH2 scissor, and the Cl-C-I bend or C-Cl stretch fundamentals. The A-band absorption and absolute resonance Raman intensities were simulated using a simple model which included preresonant contributions to the fundamental Raman peaks and time-dependent wave packet calculations. The motion of the wave packet on the excited state surface was converted from dimensionless normal coordinates into internal coordinates using the results of normal coordinate calculations. The A-band short-time photodissociation dynamics of chloroiodomethane shows that the C-I bond lengthens, the I-C-Cl and H-C-I angles become smaller, and the H-C-Cl angles become larger. These internal coordinate motions which are associated with relatively low frequency modes are consistent with a simple impulsive ''soft'' radical model of the photodissociation and the CH2Cl group changing to a more planar structure. However, the C-H bond length does not change much and the H-C-H angle (associated with higher frequency modes) becomes slightly smaller which is inconsistent with the ''soft'' radical model and the CH2Cl group changing to a more planar structure. This suggests that an impulsive ''semirigid'' radical model may be more appropriate than the ''soft'' radical model to qualitatively describe the chloroiodomethane photodissociation. An ambiguity in the assignment of the 724 cm(-1) Raman peak and its associated combination bands to combination bands of the nominal C-I stretch overtones with the fundamentals of the Cl-C-I bend or C-Cl stretch fundamentals limits what we are able to determine about the C-Cl bond length changes during the initial stages of the photodissociation. (C) 1996 American Instirzrte of Physics. [References: 84]
机译:我们已经获得了环己烷溶液中h(2)-氯代甲烷(14个激发波长在200 nm和355 nm之间)和d(2)-氯碘甲烷(对于282.4 nm激发)的共振拉曼光谱和绝对拉曼截面。 A波段共振拉曼光谱中的大多数强度出现在标称CI拉伸泛音的进展中以及标称CI拉伸泛音与CH2摇摆,CH2剪刀和Cl-CI弯曲或C-Cl的基本特征的组合带中延伸基本面。使用一个简单的模型模拟了A波段吸收和绝对共振拉曼强度,该模型包括对基本拉曼峰的先共振贡献和随时间变化的波包计算。使用法向坐标计算的结果,将波包在激发态表面上的运动从无量纲法向坐标转换为内部坐标。氯碘甲烷的A带短时光解离动力学表明,C-I键变长,I-C-Cl和H-C-I角变小,而H-C-Cl角变大。这些与较低频率模式相关的内部坐标运动与光解离和CH2Cl基团变为更平坦结构的简单脉冲``软''自由基模型相一致。但是,C-H键的长度变化不大,并且H-C-H角(与高频模式相关)变得略小,这与“软”自由基模型和CH2Cl基团变为更平坦的结构不一致。这表明,用脉冲“半刚性”自由基模型比“软”自由基模型更适合定性地描述氯碘甲烷的光解离。将724 cm(-1)拉曼峰及其相关组合带分配给具有CI-CI弯曲或C-Cl拉伸基础的标称CI拉伸泛音的组合带时存在歧义,这限制了我们的能力确定在光解离的初始阶段C-Cl键长的变化。 (C)1996年美国物理学会。 [参考:84]

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