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Mixing laser spectroscopy and mass spectrometry-infrared spectra of metal cation-hydrogen complexes

机译:金属阳离子氢气复合物的混合激光光谱和质谱 - 红外光谱

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We describe recent experiments in which mass spectrometry and laser spectroscopy are combined to characterize Li~(+)-H_(2), Na~(+)-H_(2), B~(+)-H_(2) and Al~(+)-H_(2) complexes in the gas-phase. The infrared spectra, which feature full resolution of rotational sub-structures, are recorded by monitoring M~(+) photofragments as the infrared wavelength is scanned. The spectra deliver detailed information on the way, in which a hydrogen molecule is attached to a metal cation including the intermolecular separation, the force constant for the intermolecular bond and the H-H stretching frequency. The complexes all possess T-shaped equilibrium geometries and display a clear correlation between the length and force constant of the intermolecular bond and the dissociation energy. In contrast, the data do not support any straightforward correlation between the frequency shift for the H-H stretch mode and the dissociation energy.
机译:我们描述了最近的实验,其中质谱和激光光谱组合以表征Li〜(+) - H_(2),Na〜(+) - H_(2),B〜(+) - H_(2)和Al〜 (+) - 气相中的H_(2)复合物。通过监测扫描红外波长的M〜(+)光折叠,记录具有旋转子结构的全分辨率的红外光谱。光谱在途径中提供详细信息,其中氢分子连接到包括分子间分离的金属阳离子,分子间键的力常数和H-H拉伸频率。复合物均具有T形平衡几何形状,并在分子间键和解离能的长度和力常数之间显示明显的相关性。相反,数据不支持H-H拉伸模式和解离能之间的频移之间的任何直接相关性。

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