McKellar A R W, Xu Yunjie, Jäger Wolfgang
Steacie Institute for Molecular Sciences, National Research Council of Canada, Ottawa, Ontario K1A 0R6, Canada.
J Phys Chem A. 2007 Aug 9;111(31):7329-37. doi: 10.1021/jp070618w. Epub 2007 Apr 25.
High-resolution spectra of HeN-OCS clusters with N up to 39 in the microwave region and up to 72 in the infrared region were observed with apparatus-limited line widths of about 15 kHz and 0.001 cm(-1), respectively. The cold (approximately 0.2 K) clusters were produced in pulsed supersonic jet expansions of very dilute OCS + He mixtures and probed using a microwave Fourier transform spectrometer or a tunable infrared diode laser spectrometer. Consistent analyses of the microwave and infrared data yield band origins for the carbonyl stretching vibration, together with rotational parameters for the ground and excited vibrational states. The rotational constant, B, passes through a minimum at N = 9 and then rises as the He atoms uncouple from the OCS rotational motion as a result of superfluid effects. There are broad unexpected oscillations in B, with maxima at N = 24 and 47 and minima at N = 36 and 62. The change in B upon vibrational excitation, which is negative for the OCS molecule, converges to positive values for N > 15. These results help to bridge the gap between individual molecules and bulk matter with atom-by-atom resolution over a significant range of cluster sizes.
观测到了微波区域中N值高达39、红外区域中N值高达72的HeN-OCS团簇的高分辨率光谱,其仪器限制线宽分别约为15 kHz和0.001 cm⁻¹。冷(约0.2 K)团簇是在极稀的OCS + He混合物的脉冲超声速喷射膨胀中产生的,并使用微波傅里叶变换光谱仪或可调谐红外二极管激光光谱仪进行探测。对微波和红外数据的一致分析得出了羰基伸缩振动的带起源,以及基态和激发振动态的转动参数。转动常数B在N = 9时达到最小值,然后由于超流效应,随着He原子与OCS转动运动解耦而上升。B存在广泛的意外振荡,在N = 24和47时出现最大值,在N = 36和62时出现最小值。振动激发时B的变化,对于OCS分子是负的,对于N > 15则收敛为正值。这些结果有助于在相当大的团簇尺寸范围内,以逐个原子的分辨率弥合单个分子与大块物质之间的差距。