Tang Jian, McKellar A R W
Steacie Institute for Molecular Sciences, National Research Council of Canada, Ottawa, Ontario.
J Chem Phys. 2005 Sep 15;123(11):114314. doi: 10.1063/1.2032989.
High-resolution infrared spectra of clusters containing para-H2 and/or ortho-H2 and a single nitrous oxide molecule are studied in the 2225-cm(-1) region of the upsilon1 fundamental band of N2O. The clusters are formed in pulsed supersonic jet expansions from a cooled nozzle and probed using a tunable infrared diode laser spectrometer. The simple symmetric rotor-type spectra generally show no resolved K structure, with prominent Q-branch features for ortho-H2 but not para-H2 clusters. The observed vibrational shifts and rotational constants are reported. There is no obvious indication of superfluid effects for para-H2 clusters up to N=13. Sharp transitions due to even larger clusters are observed, but no definite assignments are possible. Mixed (para-H2)N-(ortho-H2)M-N2O cluster line positions can be well predicted by linear interpolation between the corresponding transitions of the pure clusters.
在N2O的υ1基频带2225厘米-1区域研究了含有对- H2和/或邻- H2以及单个一氧化二氮分子的团簇的高分辨率红外光谱。这些团簇在来自冷却喷嘴的脉冲超声速射流膨胀中形成,并使用可调谐红外二极管激光光谱仪进行探测。简单的对称转子型光谱通常没有分辨出的K结构,对于邻- H2团簇有突出的Q分支特征,而对- H2团簇则没有。报告了观察到的振动位移和转动常数。对于N = 13以下的对- H2团簇,没有明显的超流效应迹象。观察到了更大团簇引起的尖锐跃迁,但无法进行明确的归属。混合的(对- H2)N-(邻- H2)M-N2O团簇谱线位置可以通过纯团簇相应跃迁之间的线性插值很好地预测。