Yu Zhenhong, Chuang Cheng-chi, Medley Patrick, Stone Todd A, Klemperer William
Department of Chemistry and Chemical Biology, Harvard University, Cambridge, Massachusetts 02138, USA.
J Chem Phys. 2004 Apr 15;120(15):6922-9. doi: 10.1063/1.1669387.
The v(HF)=3 levels of the linear OC-HF complex are observed in the range of 10,800-11,500 cm(-1) using intracavity Ti-sapphire laser-induced fluorescence. The vibrational predissociation linewidths of both (30000) and (3001(1)0) states exceed 5 GHz; thus, the measured spectra are not rotationally resolvable. Under the assumption that these levels are not strongly perturbed, the rotational constants of the two levels are determined to be 0.1100(1) cm(-1) for (30000), 0.1081(1), and 0.1065(1) cm(-1) for f and e sublevels of (3001(1)0), respectively, through band contour fitting. The (30000)<--(00000) band origin is at 10,894.46(1) cm(-1), showing a HF wave number redshift of 478.3 cm(-1). The 4.07 redshift ratio of v(HF)=3 to that of v(HF)=1 indicates a significantly nonlinear increase of the intermolecular interaction energy through HF valence excitation. An ab initio interaction potential surface for HF valence coordinates varying from 0.8 to 1.25 A is used to examine vibrational dynamics. The HF valence vibration v(1) is treated perturbatively, showing that the vibrational redshifts are determined essentially in first order with only a very small second-order contribution. The (3001(1)0)<--(00000) combination transition is observed with the band origin at 11,432.66(1) cm(-1), giving the HF intermolecular bending mode to be 538.2 cm(-1). The high frequency of this vibration, compared to that in similar HF complexes, shows the strong angular anisotropy of the intermolecular interaction potential of OC-HF with respect to the HF subunit. The lifetime of the (3001(1)0) level increases to 28 ps from 14 ps for (30000).
利用腔内钛宝石激光诱导荧光,在10800 - 11500厘米⁻¹范围内观测到了线性OC - HF复合物的v(HF)=3能级。(30000)和(3001(1)0)态的振动预解离线宽均超过5吉赫兹;因此,所测光谱无法进行转动分辨。在这些能级未受到强烈微扰的假设下,通过能带轮廓拟合确定,(30000)的两个能级的转动常数分别为0.1100(1)厘米⁻¹,(3001(1)0)的f和e子能级的转动常数分别为0.1081(1)和0.1065(1)厘米⁻¹。(30000)<--(00000)带的起源位于10894.46(1)厘米⁻¹,显示出HF波数红移478.3厘米⁻¹。v(HF)=3与v(HF)=1的4.07红移比表明,通过HF价激发,分子间相互作用能有显著的非线性增加。使用一个从0.8到1.25埃变化的HF价坐标的从头算相互作用势面来研究振动动力学。HF价振动v(1)采用微扰处理,结果表明振动红移基本上由一阶决定,二阶贡献非常小。观测到(3001(1)0)<--(00000)组合跃迁,带起源位于11432.66(1)厘米⁻¹,得出HF分子间弯曲模式为538.2厘米⁻¹。与类似HF复合物中的情况相比,该振动的高频表明OC - HF相对于HF亚基的分子间相互作用势具有很强的角各向异性。(3001(1)0)能级的寿命从(30000)的14皮秒增加到28皮秒。