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首页> 外文期刊>Journal of Photochemistry and Photobiology, A. Chemistry >Two-color resonant two-photon ionization and mass-analyzed threshold ionization spectroscopy of o-chloroanisole
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Two-color resonant two-photon ionization and mass-analyzed threshold ionization spectroscopy of o-chloroanisole

机译:邻氯苯甲醚的双色共振双光子电离和质谱分析阈电离光谱

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摘要

We applied the two-color resonant two-photon ionization and mass-analyzed threshold ionization techniques to record the vibrationally resolved spectra of the selected isotopomers of o-chloroanisole in the electronically excited S1 and cationic ground Do states. As supported by our theoretical calculations, only the trans form of o-chloroanisole involves in the two-photon photoexcitation and ionization processes. The band origins of the S1 ← S0 electronic transition and adiabatic ionization energies for the ~(35)Cl and ~(37)Cl isotopomers of o-chloroanisole are found to be the same within our detection limit, with the values of 35 745 ± 2 and 66 982 ± 5 cm~(-1), respectively. The general spectral features of the two isotopomers are nearly identical and result from in-plane ring deformation and substituent-sensitive bending and stretching as well as the CH3 torsional motions.
机译:我们应用了双色共振双光子电离和质量分析阈值电离技术,以记录在电子激发的S1和阳离子基态下邻氯苯甲醚的选定异构体的振动分辨光谱。根据我们的理论计算,仅邻氯苯甲醚的反式参与了双光子的光激发和电离过程。发现邻氯苯甲醚的〜(35)Cl和〜(37)Cl异构体的S1←S0电子跃迁和绝热电离能的能带起源在我们的检测极限内相同,值为35 745± 2和66982±5 cm〜(-1)。两种同位异构体的一般光谱特征几乎相同,这是由于面内环变形,对取代基敏感的弯曲和拉伸以及CH3扭转运动引起的。

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