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用选择离子红外光谱研究V(HO)团簇中的微溶剂化作用。

Microsolvation in V(HO) Clusters Studied with Selected-Ion Infrared Spectroscopy.

作者信息

Carnegie Prosser D, Marks Joshua H, Brathwaite Antonio D, Ward Timothy B, Duncan Michael A

机构信息

Department of Chemistry , University of Georgia , Athens , Georgia 30602 , United States.

Department of Chemistry , Emory University , Atlanta , Georgia 30322 , United States.

出版信息

J Phys Chem A. 2020 Feb 13;124(6):1093-1103. doi: 10.1021/acs.jpca.9b11275. Epub 2020 Jan 31.

Abstract

Gas-phase ion-molecule clusters of the form V(HO) ( = 1-30) are produced by laser vaporization in a supersonic expansion. These ions are analyzed and mass-selected with a time-of-flight mass spectrometer and investigated with infrared laser photodissociation spectroscopy. The small clusters ( ≤ 7) are studied with argon tagging, while the larger clusters are studied via the elimination of water molecules. The vibrational spectra for the small clusters include only free O-H stretching vibrations, while larger clusters exhibit redshifted hydrogen bonding vibrations. The spectral patterns reveal that the coordination around V ions is completed with four water molecules. A symmetric square-planar structure forms for the = 4 ion, and this becomes the core ion in larger structures. Clusters up to = 8 have mostly two-dimensional structures, but hydrogen bonding networks evolve to three-dimensional structures in larger clusters. The free O-H vibration of acceptor-acceptor-donor (AAD)-coordinated surface molecules converges to a frequency near that of bulk water by the cluster size of = 30. However, the splitting of this vibration for AAD- versus AD-coordinated molecules is still different compared to other singly charged or doubly charged cation-water clusters. This indicates that cation identity and charge-site location in the cluster can produce discernable spectral differences for clusters in this size range.

摘要

通过在超声速膨胀中进行激光汽化产生形式为V(HO) ( = 1 - 30)的气相离子 - 分子簇。这些离子用飞行时间质谱仪进行分析和质量选择,并用红外激光光解离光谱进行研究。较小的簇( ≤ 7)用氩标记法研究,而较大的簇通过消除水分子来研究。较小簇的振动光谱仅包括自由的O - H伸缩振动,而较大的簇表现出红移的氢键振动。光谱模式表明V离子周围的配位由四个水分子完成。对于 = 4的离子形成对称的正方形平面结构,并且这成为较大结构中的核心离子。高达 = 8的簇大多具有二维结构,但氢键网络在较大的簇中演变为三维结构。受体 - 受体 - 供体(AAD)配位的表面分子的自由O - H振动在 = 30的簇尺寸时收敛到接近本体水的频率。然而,与其他单电荷或双电荷阳离子 - 水簇相比,这种振动对于AAD配位分子与AD配位分子的分裂仍然不同。这表明簇中的阳离子身份和电荷位点位置可以为该尺寸范围内的簇产生可辨别的光谱差异。

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