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LASER-INDUCED FLUORESCENCE SPECTRUM OF THE FCO RADICAL

机译:激光诱导的FCO自由基荧光光谱

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Laser-induced fluorescence spectra of FCO are reported between 29 000 cm(-1) and 32 800 cm(-1) FCO was prepared by three separate procedures: photolysis of CF2O and C2F2O2, and photolysis of F-2 in the presence of CO. The observation of the same spectral features from all three production schemes confirms the assignment of FCO as the spectral carrier. Although the LIF spectrum lies in the same wavelength region as the UV absorption spectrum, the two spectra do not have the same appearance and so represent different upper states. The LIF spectrum is assigned as a transition to the A '' Renner-Teller component of a linear (2) Pi State predicted by ab initio calculations. The spectrum shows a progression of bands at approximately 430 cm(-1) intervals, in good agreement with the predicted spacing of bending levels in the (2) Pi state. The lower frequency stretching mode nu(1) occurs at approximately 960 cm(-1). The vibronic bands are strongly degraded to the red, consistent with the calculated geometry of the Linear state but not the bent A' state to which the absorption spectrum in this region is assigned. Resolved emission from the longest wavelength prominent bandhead at 29 872 cm(-1) shows progressions in the C-O stretch and bend modes of the ground state. The fluorescence lifetime of this band extrapolated to zero pressure is 95+/-4 ns, while that of the band at 31 136 cm(-1) is 63+/-5 ns. [References: 23]
机译:据报道,FCO的激光诱导荧光光谱在29 000 cm(-1)和32 800 cm(-1)之间。FCO是通过三种独立的程序制备的:CF2O和C2F2O2的光解,以及在CO存在下F-2的光解对所有三种生产方案的相同光谱特征的观察证实了FCO作为光谱载体的分配。尽管LIF光谱与UV吸收光谱位于相同的波长范围内,但两个光谱的外观不同,因此代表了不同的上态。 LIF频谱被指定为从头算计算所预测的线性(2)Pi状态的A''Renner-Teller分量的跃迁。光谱显示,在大约430 cm(-1)的间隔内,带的进展与(2)Pi态中弯曲水平的预测间距非常吻合。低频拉伸模式nu(1)出现在大约960 cm(-1)处。振动带被强烈降解为红色,这与计算的线性状态的几何形状一致,但与弯曲的A'状态(在该区域中分配了吸收光谱的状态)不一致。从最长的波长突出带头在29 872 cm(-1)处解析的发射显示了基态的C-O拉伸和弯曲模式的进展。外推至零压力的该带的荧光寿命为95 +/- 4 ns,而在31 136 cm(-1)处的该带的荧光寿命为63 +/- 5 ns。 [参考:23]

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