Cuisset A, Aviles Moreno J R, Huet T R, Petitprez D, Demaison J, Crassous J
Laboratoire de Physique des Lasers, Atomes et Molécules UMR 8523 CNRS-Université de Lille 1, 59655 Villeneuve d'Ascq Cedex, France.
J Phys Chem A. 2005 Jun 30;109(25):5708-16. doi: 10.1021/jp0443658.
The rotational spectrum of chlorofluoroiodomethane (CHClFI) has been investigated. Because its rotational spectrum is extremely crowded, extensive ab initio calculations were first performed in order to predict the molecular parameters. The low J transitions were measured using a pulsed-molecular-beam Fourier transform spectrometer, and the millimeter-wave spectrum was measured to determine accurate centrifugal distortion constants. Because of the high resolution of the experimental techniques, the analysis yielded accurate rotational constants, centrifugal distortion corrections, and the complete quadrupole coupling tensors for the iodine and chlorine nuclei, as well as the contribution of iodine to the spin-rotation interaction. These molecular parameters were determined for the two isotopologs CH35ClFI and CH37ClFI. They reproduce the observed transitions within the experimental accuracy. Moreover, the ab initio calculations have provided a precise equilibrium molecular structure. Furthermore, the ab initio molecular parameters are found in good agreement with the corresponding experimental values.
对氯氟碘甲烷(CHClFI)的转动光谱进行了研究。由于其转动光谱极其密集,首先进行了广泛的从头算计算以预测分子参数。使用脉冲分子束傅里叶变换光谱仪测量了低J跃迁,并测量了毫米波光谱以确定精确的离心畸变常数。由于实验技术的高分辨率,分析得出了精确的转动常数、离心畸变校正值,以及碘和氯原子核的完整四极耦合张量,还有碘对自旋-转动相互作用的贡献。针对两种同位素变体CH35ClFI和CH37ClFI确定了这些分子参数。它们在实验精度范围内重现了观测到的跃迁。此外,从头算计算提供了精确的平衡分子结构。而且,从头算分子参数与相应的实验值吻合良好。