Astrochimie Expérimentale, Institut de Physique de Rennes, UMR 6251 CNRS-UR1, Université de Rennes 1, France.
J Chem Phys. 2009 Nov 28;131(20):204312. doi: 10.1063/1.3264576.
In this article, we report on a Fourier transform infrared study of absorption bands belonging to small-sized water clusters formed in a continuous slit nozzle expansion of water vapor seeded in argon carrier gas. Clear signatures of free and H-bonded OH vibrations in water aggregates from dimer to pentamer are seen in our spectra. Following an increase in argon backing pressure, the position of the cluster absorption bands varies from those characteristics of isolated water aggregates in the gas phase to those known for clusters trapped in a static argon matrix. These variations can be interpreted in terms of sequential solvation of the water clusters by an increasing number of argon atoms attached to water clusters. Our measured spectra are in good agreement with those obtained previously either for free or Ar coated small-sized water clusters using pulsed slit-jet expansions. Our results are equally in accord with those originating from a variety of tunable laser based techniques using molecular beams or free jets or from the study of water aggregates embedded in rare gas matrices. Distinctions are reported, however, and discussed. Ab initio calculations have made it possible to speculate on the average size of an argon solvation shell around individual clusters as well as on the development of the OH stretch vibrational shifts in mixed (H(2)O)(m)Ar(n) clusters having different compositions and architectures.
本文报道了傅里叶变换红外光谱研究水蒸气在氩气载体气体中连续狭缝喷嘴膨胀形成的小尺寸水分子簇的吸收带。在我们的光谱中,可以清楚地看到从二聚体到五聚体的水分子聚集物中的游离和氢键 OH 振动的特征。随着氩气背压的增加,簇吸收带的位置从气相中孤立的水聚集体的特征变化到在静态氩气基质中捕获的聚集体的特征。这些变化可以根据越来越多的氩原子与水聚集体的顺序溶剂化来解释。我们测量的光谱与以前使用脉冲狭缝喷射膨胀获得的游离或 Ar 涂层小尺寸水聚集体的光谱非常吻合。我们的结果与使用分子束或自由射流的各种可调谐激光技术以及嵌入稀有气体基质中的水聚集体的研究结果一致。然而,也报告了差异并进行了讨论。从头计算使得可以推测单个簇周围氩溶剂化壳的平均大小以及具有不同组成和结构的混合(H(2)O)(m)Ar(n)簇中 OH 伸缩振动位移的发展。