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芘的振动和转动结构及激发态动力学。

Vibrational and rotational structure and excited-state dynamics of pyrene.

机构信息

Division of Chemistry, Graduate School of Science, Kyoto University, Kyoto 606-8502, Japan.

出版信息

J Chem Phys. 2009 Dec 14;131(22):224318. doi: 10.1063/1.3270136.

Abstract

Vibrational level structure in the S(0) (1)A(g) and S(1) (1)B(3u) states of pyrene was investigated through analysis of fluorescence excitation spectra and dispersed fluorescence spectra for single vibronic level excitation in a supersonic jet and through referring to the results of ab initio theoretical calculation. The vibrational energies are very similar in the both states. We found broad spectral feature in the dispersed fluorescence spectrum for single vibronic level excitation with an excess energy of 730 cm(-1). This indicates that intramolecular vibrational redistribution efficiently occurs at small amounts of excess energy in the S(1) (1)B(3u) state of pyrene. We have also observed a rotationally resolved ultrahigh-resolution spectrum of the 0(0) (0) band. Rotational constants have been determined and it has been shown that the pyrene molecule is planar in both the S(0) and S(1) states, and that its geometrical structure does not change significantly upon electronic excitation. Broadening of rotational lines with the magnetic field by the Zeeman splitting of M(J) levels was very small, indicating that intersystem crossing to the triplet state is minimal. The long fluorescence lifetime indicates that internal conversion to the S(0) state is also slow. We conclude that the similarity of pyrene's molecular structure and potential energy curve in its S(0) and S(1) states is the main cause of the slow radiationless transitions.

摘要

通过分析在超音速射流中单振子激发的荧光激发光谱和分散荧光光谱,并参考从头计算理论计算的结果,研究了芘的 S(0) (1)A(g) 和 S(1) (1)B(3u) 态的振动能级结构。这两个态的振动能非常相似。我们在单振子激发的分散荧光光谱中发现了一个具有 730cm(-1) 过量能量的宽光谱特征。这表明在芘的 S(1) (1)B(3u) 态中,少量的过剩能量下,分子内振动再分配有效地发生了。我们还观察到了 0(0) (0) 带的旋转分辨超高分辨率光谱。确定了转动常数,并表明在 S(0) 和 S(1) 态下,芘分子是平面的,并且其几何结构在电子激发时没有明显变化。由于 M(J) 能级的塞曼分裂导致的转动线宽随磁场的变化很小,表明系间窜越到三重态的情况最小。长荧光寿命表明内部转换到 S(0) 态也很慢。我们得出结论,芘的分子结构和 S(0) 和 S(1) 态势能曲线的相似性是辐射无辐射跃迁缓慢的主要原因。

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