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首页> 外文期刊>The Journal of Chemical Physics >Line broadening of confined CO gas: From molecule-wall to molecule-molecule collisions with pressure
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Line broadening of confined CO gas: From molecule-wall to molecule-molecule collisions with pressure

机译:受限CO气体的线展宽:从分子壁碰撞到分子与压力碰撞

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The infrared absorption in the fundamental band of CO gas confined in porous silica xerogel has been recorded at room temperature for pressures between about 5 and 920 hPa using a high resolution Fourier transform spectrometer. The widths of individual lines are determined from fits of measured spectra and compared with ab initio predictions obtained from requantized classical molecular dynamics simulations. Good agreement is obtained from the low pressure regime where the line shapes are governed by molecule-wall collisions to high pressures where the influence of molecule-molecule interactions dominates. These results, together with those obtained with a simple analytical model, indicate that both mechanisms contribute in a practically additive way to the observed linewidths. They also confirm that a single collision of a molecule with a wall changes its rotational state. These results are of interest for the determination of some characteristics of the opened porosity of porous materials through optical soundings.
机译:已经使用高分辨率傅里叶变换光谱仪在室温下记录了局限在多孔二氧化硅干凝胶中的CO气体基带中的红外吸收,其压力介于5至920 hPa之间。根据测量光谱的拟合确定单条线的宽度,并将其与从重新量化的经典分子动力学模拟获得的从头算起的预测值进行比较。从低压状态获得了很好的一致性,在低压状态下,线形由分子-壁碰撞控制,而在高压下,分子-分子相互作用的影响占主导。这些结果以及通过简单分析模型获得的结果表明,这两种机制实际上对观察到的线宽有累加作用。他们还证实,分子与壁的一次碰撞会改变其旋转状态。这些结果对于通过光学测深确定多孔材料的开孔孔隙率的某些特征是有意义的。

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