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High-resolution analysis of the 12.6?μm spectral region of the nitryl chloride ClNO2 molecule
摘要: The 12.6 μm region of nitryl chloride (ClNO2) has been recorded at high resolution (0.00102 cm?1) using a Fourier transform spectrometer and the SOLEIL synchrotron light source. ClNO2 was found during our studies of chlorine nitrate and, after fractional distillations it was introduced into a multipass White cell made of inert materials, with an optical path length of 5.4 m. 320 scans were recorded for the range 600–980 cm?1 at a total pressure of 0.23 hPa and a temperature of 250 K. A thorough analysis of the ν2, 2ν6 and 2ν3 bands of 35ClNO2 falling in this region has been carried out using a Hamiltonian model which takes explicitly into account the numerous resonances affecting the ro-vibrational energy levels; especially the C-type Coriolis resonance between the ν2 and the ν3 + ν6 modes. These two modes are only separated by less than 20 cm?1 and are thoroughly mixed. From the fittings, the following band centers were derived: νo(ν2) = 792.761264(60) cm?1, νo(ν3 + ν6) = 775.8923(20) cm?1 for 35ClNO2 where the uncertainties are one standard deviation. Due to their sharp Q branches falling into an atmospheric “window”, the detection of the ν2 bands might be an advantageous route for future attempts to quantify atmospheric ClNO2, using infrared techniques.
关键词: Nitryl chloride,Line positions,Coriolis and Fermi resonances,ClNO2,High-resolution fourier transform spectroscopy
更新于2025-09-10 09:29:36