Baek Dae Youl, Wang Jinguo, Doi Atsushi, Kasahara Shunji, Katô Hajime, Baba Masaaki
Molecular Photoscience Research Center, Kobe University, Nada-ku, Kobe 657-8501, Japan.
J Phys Chem A. 2005 Aug 18;109(32):7127-33. doi: 10.1021/jp0513115.
Doppler-free two-photon excitation spectra and the Zeeman effects for the 1 band of the S1 1B2u <-- S0 1A1g transition in gaseous benzene-d6 were measured. Although the spectral lines were strongly perturbed, almost all of the lines near the band origin could be assigned. From a deperturbation analysis, the perturbation near the band origin was identified as originating from an anharmonic resonance interaction. Perturbation centered at K = 28-29 in the 14(0)1 band was analyzed, and it was identified as originating from a perpendicular Coriolis interaction. The symmetry and the assignment of the perturbing state proposed by Schubert et al. (Schubert, U.; Riedle, E.; Neusser, H. J. J. Chem. Phys. 1989, 90, 5994.) were confirmed. No perturbation originating from an interaction with a triplet state was observed in both bands. From the Zeeman spectra and the analysis, it is demonstrated that rotationally resolved levels are not mixed with a triplet state. The intersystem mixing is not likely to occur at levels of low excess energy in the S1 state of an isolated benzene. Nonradiative decay of an isolated benzene in the low vibronic levels of the S1 state will occur through the internal mixing followed by the rotational and vibrational relaxation in the S0 state.
测量了气态苯 - d6 中 S1 1B2u ← S0 1A1g 跃迁 1 带的无多普勒双光子激发光谱和塞曼效应。尽管光谱线受到强烈扰动,但几乎所有靠近带起源的谱线都可以被归属。通过去扰动分析,确定带起源附近的扰动源自非谐共振相互作用。对 14(0)1 带中以 K = 28 - 29 为中心的扰动进行了分析,确定其源自垂直科里奥利相互作用。舒伯特等人(舒伯特,U.;里德尔,E.;诺伊瑟,H. J. 《化学物理杂志》1989 年,90 卷,5994 页)提出的微扰态的对称性和归属得到了证实。在两个带中均未观察到源自与三重态相互作用的扰动。从塞曼光谱及其分析表明,旋转分辨能级与三重态没有混合。在孤立苯的 S1 态中,低过剩能量水平不太可能发生系间混合。孤立苯在 S1 态的低振动态能级的非辐射衰变将通过内部混合,随后在 S0 态进行旋转和振动弛豫而发生。