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卟吩在 S0 和 S1 电子态下的振动:超音速射流中单振子能级分散荧光研究。

Vibrations of porphycene in the S0 and S1 electronic states: single vibronic level dispersed fluorescence study in a supersonic jet.

机构信息

Institute of Physical Chemistry, Polish Academy of Sciences, Kasprzaka 44, 01-224 Warsaw, Poland.

出版信息

J Chem Phys. 2013 May 7;138(17):174201. doi: 10.1063/1.4802769.

Abstract

Supersonic jet-isolated porphycene has been studied using the techniques of laser-induced fluorescence excitation, single vibronic level fluorescence, and spectral hole burning, combined with quantum mechanical calculations of geometry and vibrational structure of the ground and lowest electronically excited singlet states. Porphycene is a model for coherent double hydrogen tunneling in a symmetrical double well potential, as evidenced by tunneling splittings observed in electronic absorption and emission. The results led to reliable assignment of low frequency modes in S0 and S1 electronic states. The values of tunneling splitting were determined for ground state vibrational levels. In the case of tautomerization-promoting 2A(g) mode, tunneling splitting values significantly increase with the vibrational quantum number. Mode coupling was demonstrated by different values of tunneling splitting obtained for coexcitation of two or more vibrations. Finally, alternation of relative intensity patterns for the components of 2A(g) tunneling doublet observed for excitation and emission into different vibrational levels suggests that the energy order of levels corresponding to (+) and (-) combinations of nuclear wave functions is different for even and odd vibrational quantum numbers.

摘要

超声速喷气隔离卟吩已通过激光诱导荧光激发、单振子荧光和光谱烧孔技术,并结合基态和最低电子激发单线态的几何形状和振动结构的量子力学计算进行了研究。卟吩是对称双势阱中相干双氢隧穿的模型,这一点可通过电子吸收和发射中观察到的隧穿分裂得到证明。研究结果导致了 S0 和 S1 电子态中低频模式的可靠分配。对于基态振动能级,确定了隧穿分裂值。对于促进互变异构的 2A(g)模式,隧穿分裂值随振动量子数的增加而显著增加。通过对两个或更多振动的共同激发获得的不同隧穿分裂值证明了模式耦合。最后,对于激发和发射到不同振动能级时观察到的 2A(g)隧穿双峰的组分的相对强度模式的交替表明,对应于核波函数的(+)和(-)组合的能级的能量顺序对于偶数和奇数振动量子数是不同的。

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