Yang Shengfu, Brereton Scott M, Nandhra Satvinder, Ellis Andrew M, Shang Bo, Yuan Lan-Feng, Yang Jinlong
Department of Chemistry, University of Leicester, University Road, Leicester LE1 7RH, United Kingdom.
J Chem Phys. 2007 Oct 7;127(13):134303. doi: 10.1063/1.2772624.
Electron impact mass spectra have been recorded for helium nanodroplets containing water clusters. In addition to identification of both H(+)(H(2)O)(n) and (H(2)O)(n)(+) ions in the gas phase, additional peaks are observed which are assigned to He(H(2)O)(n)(+) clusters for up to n=27. No clusters are detected with more than one helium atom attached. The interpretation of these findings is that quenching of (H(2)O)(n)(+) by the surrounding helium can cool the cluster to the point where not only is fragmentation to H(+)(H(2)O)(m) (where m < or = n-1) avoided, but also, in some cases, a helium atom can remain attached to the cluster ion as it escapes into the gas phase. Ab initio calculations suggest that the first step after ionization is the rapid formation of distinct H(3)O(+) and OH units within the (H(2)O)(n)(+) cluster. To explain the formation and survival of He(H(2)O)(n)(+) clusters through to detection, the H(3)O(+) is assumed to be located at the surface of the cluster with a dangling O-H bond to which a single helium atom can attach via a charge-induced dipole interaction. This study suggests that, like H(+)(H(2)O)(n) ions, the preferential location for the positive charge in large (H(2)O)(n)(+) clusters is on the surface rather than as a solvated ion in the interior of the cluster.
已记录了含有水团簇的氦纳米液滴的电子轰击质谱。除了在气相中识别出H⁺(H₂O)ₙ和(H₂O)ₙ⁺离子外,还观察到了其他峰,这些峰被归属于He(H₂O)ₙ⁺团簇,n最大可达27。未检测到附着有多个氦原子的团簇。对这些发现的解释是,周围氦对(H₂O)ₙ⁺的猝灭作用可将团簇冷却到这样一个程度,即不仅避免了其碎裂成H⁺(H₂O)ₘ(其中m≤n - 1),而且在某些情况下,当团簇离子逸入气相时,一个氦原子仍可附着在团簇离子上。从头算计算表明,电离后的第一步是在(H₂O)ₙ⁺团簇内迅速形成不同的H₃O⁺和OH单元。为了解释He(H₂O)ₙ⁺团簇直至被检测到的形成和存活情况,假定H₃O⁺位于团簇表面,带有一个悬垂的O - H键,单个氦原子可通过电荷诱导偶极相互作用附着于此。这项研究表明,与H⁺(H₂O)ₙ离子一样,大的(H₂O)ₙ⁺团簇中正电荷的优先位置在表面,而非作为团簇内部的溶剂化离子。