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首页> 外文期刊>The Journal of Chemical Physics >Identification of four rotamers of m-methoxystyrene by resonant two-photon ionization and mass analyzed threshold ionization spectroscopy
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Identification of four rotamers of m-methoxystyrene by resonant two-photon ionization and mass analyzed threshold ionization spectroscopy

机译:共振双光子电离和质谱分析阈值电离光谱法鉴定间-甲氧基苯乙烯的四个旋转异构体

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We report the vibronic and cation spectra of four rotamers of m-methoxystyrene, recorded by using the two-color resonant two-photon ionization and mass-analyzed threshold ionization techniques. The excitation energies of the S-1 <- S-0 electronic transition are found to be 32 767, 32 907, 33 222, and 33 281 cm(-1), and the corresponding adiabatic ionization energies are 65 391, 64 977, 65 114, and 64 525 cm(-1) for these isomeric species. Most of the observed active vibrations in the electronically excited S-1 and cationic ground D-0 states involve in-plane ring deformation and substituent-sensitive bending motions. It is found that the relative orientation of the methoxyl with respect to the vinyl group does not influence the vibrational frequencies of the ring-substituent bending modes. The two dimensional potential energy surface calculations support our experimental finding that the isomerization is restricted in the S-1 and D-0 states. (c) 2015 AIP Publishing LLC.
机译:我们报告了通过使用双色共振双光子电离和质量分析阈值电离技术记录的间-甲氧基苯乙烯四个旋转异构体的振动和阳离子光谱。发现S-1 <-S-0电子跃迁的激发能为32 767、32 907、33 222和33 281 cm(-1),并且相应的绝热电离能为65 391、64 977, 65 114和64 525 cm(-1)这些异构体。在电子激发的S-1和阳离子基态D-0态下观察到的大多数主动振动都涉及面内环变形和对取代基敏感的弯曲运动。发现甲氧基相对于乙烯基的相对取向不影响环取代基弯曲模式的振动频率。二维势能面计算支持了我们的实验发现,即异构化仅限于S-1和D-0状态。 (c)2015 AIP Publishing LLC。

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