Tseng Chien-Ming, Lee Yuan T, Lin Ming-Fu, Ni Chi-Kung, Liu Suet-Yi, Lee Yuan-Pern, Xu Z F, Lin M C
Institute of Atomic and Molecular Sciences, Academia Sinica, P. O. Box 23-166, Taipei 10617, Taiwan.
J Phys Chem A. 2007 Sep 27;111(38):9463-70. doi: 10.1021/jp073282z. Epub 2007 Aug 10.
The photodissociation of phenol at 193 and 248 nm was studied using multimass ion-imaging techniques and step-scan time-resolved Fourier-transform spectroscopy. The major dissociation channels at 193 nm include cleavage of the OH bond, elimination of CO, and elimination of H(2)O. Only the former two channels are observed at 248 nm. The translational energy distribution shows that H-atom elimination occurs in both the electronically excited and ground states, but elimination of CO or H(2)O occurs in the electronic ground state. Rotationally resolved emission spectra of CO (1 <or= v <or= 4) in the spectral region of 1860-2330 cm(-1) were detected upon photolysis at 193 nm. After a correction for rotational quenching, CO (v <or= 4) shows a nascent rotational temperature of approximately 4600 K. The observed vibrational distribution of (v = 1)/(v = 2)/(v = 3)/(v = 4) = 64.3/22.2/9.1/4.4 corresponds to a vibrational temperature of 3350 +/- 20 K. An average rotational energy of 6.9 +/- 0.7 kcal mol(-1) and vibrational energy of 3.8 +/- 0.7 kcal mol(-1) are observed for the CO product. The dissociation channels, translational energy distributions of the photofragment, and vibrational and rotational energies of product CO are consistent with potential energy surfaces from quantum chemical calculations and the branching ratios from an RRKM calculation.
利用多质量离子成像技术和步进扫描时间分辨傅里叶变换光谱,研究了苯酚在193和248纳米处的光解离。193纳米处的主要解离通道包括OH键的断裂、CO的消除和H₂O的消除。在248纳米处仅观察到前两个通道。平动能分布表明,H原子的消除在电子激发态和基态均会发生,但CO或H₂O的消除发生在电子基态。在193纳米光解时,检测到了1860 - 2330厘米⁻¹光谱区域内CO(1 ≤ v ≤ 4)的转动分辨发射光谱。在对转动猝灭进行校正后,CO(v ≤ 4)显示出约4600 K的初始转动温度。观察到的(v = 1)/(v = 2)/(v = 3)/(v = 4) = 64.3/22.2/9.1/4.4的振动分布对应于3350 ± 20 K的振动温度。对于CO产物,观察到平均转动能量为6.9 ± 0.7千卡/摩尔,振动能量为3.8 ± 0.7千卡/摩尔。光解离通道、光碎片的平动能分布以及产物CO的振动和转动能量与量子化学计算得到的势能面以及RRKM计算得到的分支比一致。