Kawashima Y, Colarusso P, Zhang KQ, Bernath P, Hirota E
Department of Applied Chemistry, Kanagawa Institute of Technology, 1030 Shimo-ogino, Atsugi, Kanagawa, 243-0203, Japan
J Mol Spectrosc. 1998 Nov;192(1):152-161. doi: 10.1006/jmsp.1998.7633.
The nu1 and nu3 bands of D11BO and the nu1 band of D10BO were observed by using an infrared diode laser spectrometer. The DBO molecule was generated by an ac discharge in a mixture of BCl3, D2, O2, and He. As inferred previously, a strong Coriolis interaction was in fact found to take place between the nu1 and nu2 + nu3 states, and an analysis of the observed nu1 spectra, which explicitly took into account this Coriolis interaction, predicted the pure rotational transition frequencies of DBO in the nu1 state. Pure rotational lines were then detected by microwave spectroscopy, confirming the validity of the infrared assignment. In the microwave experiment DBO molecules were generated by a discharge in a mixture of B2D6 and O2. The three fundamental bands and a hot band of D11BO, as well as the nu1 and nu3 bands of D10BO, were subsequently recorded in emission with a Fourier transform infrared spectrometer. DBO molecules were generated by the reaction of D2 with HBO at temperatures above 800 degreesC in a ceramic tube furnace. All of the observed spectra were simultaneously subjected to a least-squares analysis to obtain molecular parameters in the ground, nu1, nu2, nu3, and nu2 + nu3 states. The results thus obtained improved the force field and molecular structure of the HBO/DBO molecules reported in a previous study (Y. Kawashima, Y. Endo, and E. Hirota, 1989, J. Mol. Spectrosc. 133, 116-127). Copyright 1998 Academic Press.
利用红外二极管激光光谱仪观测了D11BO的ν1和ν3谱带以及D10BO的ν1谱带。DBO分子是通过在BCl3、D2、O2和He的混合气体中进行交流放电产生的。正如之前所推断的,实际上发现ν1和ν2 + ν3态之间发生了强烈的科里奥利相互作用,并且对观测到的ν1光谱进行分析时明确考虑了这种科里奥利相互作用,预测了DBO在ν1态的纯转动跃迁频率。然后通过微波光谱检测到了纯转动谱线,证实了红外归属的有效性。在微波实验中,DBO分子是通过在B2D6和O2的混合气体中放电产生的。随后用傅里叶变换红外光谱仪记录了D11BO的三个基频谱带和一个热谱带以及D10BO的ν1和ν3谱带的发射光谱。DBO分子是在陶瓷管式炉中,通过D2与HBO在800℃以上的温度下反应产生的。对所有观测到的光谱同时进行最小二乘法分析,以获得基态、ν1、ν2、ν3和ν2 + ν3态的分子参数。由此得到的结果改进了先前研究(Y. Kawashima、Y. Endo和E. Hirota,1989,J. Mol. Spectrosc. 133,116 - 127)中报道的HBO/DBO分子的力场和分子结构。版权所有1998年学术出版社。