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首页> 外文期刊>The Journal of Chemical Physics >One-photon mass-analyzed threshold ionization spectroscopy of CH2BrI: Extensive bending progression, reduced steric effect, and spin-orbit effect in the cation - art. no. 024310
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One-photon mass-analyzed threshold ionization spectroscopy of CH2BrI: Extensive bending progression, reduced steric effect, and spin-orbit effect in the cation - art. no. 024310

机译:CH2BrI的单光子质量分析阈值电离光谱:阳离子领域中的广泛弯曲进程,降低的空间效应和自旋轨道效应。没有。 024310

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One-photon mass-analyzed threshold ionization (MATI) spectrum of CH2BrI was obtained using coherent vacuum-ultraviolet radiation generated by four-wave difference-frequency mixing in Kr. Unlike CH2ClI investigated previously, a very extensive bending (Br-C-I) progression was observed. Vibrational frequencies of CH2BrI+ were measured from the spectra and the vibrational assignments were made by utilizing frequencies calculated by the density-functional-theory (DFT) method using relativistic effective core potentials with and without the spin-orbit terms. A noticeable spin-orbit effect on the vibrational frequencies was observed from the DFT calculations, even though its influence was not so dramatic as in CH2ClI+. A simple explanation based on the bonding characteristics of the molecular orbitals involved in the ionization is presented to account for the above differences between the MATI spectra of CH2BrI and CH2ClI. The 0-0 band of the CH2BrI spectrum could be identified through the use of combined data from calculations and experiments. The adiabatic ionization energy determined from the position of this band was 9.5944 +/- 0.0006 eV, which was significantly smaller than the vertical ionization energy reported previously. (c) 2005 American Institute of Physics.
机译:CH2BrI的单光子质量分析阈值电离(MATI)光谱是使用在Kr中通过四波差频混合产生的相干真空紫外辐射获得的。与先前研究的CH2ClI不同,观察到非常广泛的弯曲(Br-C-I)进程。从光谱中测量CH2BrI +的振动频率,并利用密度泛函理论(DFT)方法使用相对论有效磁芯电势(带有和不带有自旋轨道项)通过计算频率来进行振动分配。从DFT计算中观察到了对振动频率的明显自旋轨道效应,尽管其影响不像在CH2ClI +中那样剧烈。提出了一种基于涉及电离的分子轨道的键合特性的简单解释,以解释CH2BrI和CH2ClI的MATI光谱之间的上述差异。通过使用来自计算和实验的组合数据,可以确定CH2BrI光谱的0-0波段。由该带的位置确定的绝热电离能为9.5944 +/- 0.0006 eV,该能量明显小于先前报道的垂直电离能。 (c)2005年美国物理研究所。

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