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首页> 外文期刊>The Journal of Chemical Physics >Autoionization-detected infrared spectroscopy of intramolecular hydrogen bonds in aromatic cations. I. Principle and application to fluorophenol and methoxyphenol
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Autoionization-detected infrared spectroscopy of intramolecular hydrogen bonds in aromatic cations. I. Principle and application to fluorophenol and methoxyphenol

机译:芳族阳离子中分子内氢键的自动电离检测红外光谱。一,氟苯酚和甲氧基苯酚的原理及应用

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摘要

A new infrared spectroscopic technique for jet-cooled molecular cations is applied to observe intramolecular hydrogen bonds in substituted phenol ions. Vibrational transitions of an ion core of high Rydberg states are measured by detecting molecular ions prepared through vibrational autoionization. The observed infrared spectra practically provide vibrational frequencies of the corresponding bare molecular ion. The OH stretching vibrations of ortho-, meta-, and para-isomers of fluorophenol and methoxyphenol cations are observed. The OH stretching vibrational frequency of the ortho-isomer shows a characteristic redshift due to the intramolecular hydrogen bond. The redshift increases with ionization, indicating a significant enhancement of the intramolecular hydrogen bond strength.
机译:喷射冷却的分子阳离子的一种新的红外光谱技术被应用于观察取代的酚离子中的分子内氢键。通过检测通过振动自电离制备的分子离子,可测量高里德堡态离子核的振动跃迁。观察到的红外光谱实际上提供了相应的裸分子离子的振动频率。观察到氟酚和甲氧基苯酚阳离子的邻,间和对异构体的OH拉伸振动。由于分子内的氢键,邻位异构体的OH拉伸振动频率显示出特征性的红移。红移随电离而增加,表明分子内氢键强度显着增强。

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