Kleffmann J, Flaud J, Pawelke G, Bürger H, Hurtmans D, Pétrisse R
Laboratoire de Chimie Physique Moléculaire C.P. 160/09, Université Libre de Bruxelles, 50 avenue F. D. Roosevelt, Brussels, B-1050, Belgium
J Mol Spectrosc. 2000 Nov;204(1):36-47. doi: 10.1006/jmsp.2000.8197.
We have measured absolute line intensities in the nu(2) fundamental band at 1238 cm(-1) of both isotopomers of hypochlorous acid, HOCl. To obtain the partial pressure of the species in the sample mixture, unavailable through direct measurement since HOCl exists only in equilibrium with H(2)O and Cl(2)O and may decay by secondary reactions, we relied on known absolute line intensities in the pure rotational far-infrared (FIR) spectrum determined from Stark effect measurements. We have thus recorded simultaneously the FIR pure rotation spectrum of HOCl using a Bruker IFS120HR interferometer and the spectrum of a few vibration-rotation lines in the infrared (IR) nu(2) band using a tunable diode laser spectrometer. The absolute intensities of these IR lines thus determined allowed us to "calibrate" the intensities of vibration-rotation lines in the whole nu(2) band, measured previously using Fourier transform spectroscopy. The treatment of the data took into account the blackbody emission contribution in the FIR and the evolution of the HOCl amount during the recording of the spectra. The latter was found to be almost constant over hours after conditioning of the cell. The square of the nu(2) band vibrational transition dipole moment was determined to be 0.013947(23) D(2) and 0.013870(51) D(2) for HO(35)Cl and HO(37)Cl, respectively, that is, 29 to 73% lower than previous measurements. A linear Herman-Wallis factor was also determined for both isotopomers. Finally, the line intensities were least-squares fitted using a model that takes into account a weak resonance between the (010) and (002) levels. Copyright 2000 Academic Press.
我们测量了次氯酸(HOCl)两种同位素异构体在波数为1238 cm⁻¹的ν₂基频带中的绝对谱线强度。由于HOCl仅与H₂O和Cl₂O处于平衡状态且可能通过二级反应衰变,无法通过直接测量获得样品混合物中该物种的分压,因此我们依赖于通过斯塔克效应测量确定的纯转动远红外(FIR)光谱中的已知绝对谱线强度。我们使用布鲁克IFS120HR干涉仪同时记录了HOCl的FIR纯转动光谱,并使用可调谐二极管激光光谱仪记录了红外(IR)ν₂带中几条振动 - 转动谱线的光谱。由此确定的这些IR谱线的绝对强度使我们能够“校准”先前使用傅里叶变换光谱法测量的整个ν₂带中振动 - 转动谱线的强度。数据处理考虑了FIR中的黑体辐射贡献以及光谱记录过程中HOCl量的变化。发现后者在细胞预处理后的数小时内几乎保持恒定。对于HO³⁵Cl和HO³⁷Cl,ν₂带振动跃迁偶极矩的平方分别确定为0.013947(23) D²和0.013870(51) D²,即比先前测量值低29%至73%。还为两种同位素异构体确定了线性赫尔曼 - 沃利斯因子。最后,使用考虑了(010)和(002)能级之间弱共振的模型对谱线强度进行最小二乘法拟合。版权所有2000年学术出版社。