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质子化冰团簇上的过氧化氢和氨。

Hydrogen peroxide and ammonia on protonated ice clusters.

作者信息

Schmidt Martin, Masson Albert, Bréchignac Catherine, Cheng Hai-Ping

机构信息

Laboratoire Aimé Cotton, CNRS, Bâtiment 505, Université Paris sud, 91405 Orsay Cedex, France.

出版信息

J Chem Phys. 2007 Apr 21;126(15):154315. doi: 10.1063/1.2717180.

Abstract

A temperature controlled source for protonated water clusters has been combined with high-resolution mass spectroscopy to study the stability pattern of ice clusters and compounds with ammonia and hydrogen peroxide depending on temperature. The stability pattern of pure protonated ice shows the two well known peaks at 21 and 28 molecules and also less pronounced structure up to n=55. Ammonia and hydrogen peroxide do not destroy this pattern but shift it by a number of water molecules. The additives are therefore integrated in the persisting crystalline structure of the pure protonated ice. Based on this structural information, density functional theory calculations reveal that hydrogen peroxide and ammonia occupy surface positions on a dodecahedral 21-molecule cluster and are not caged in the center.

摘要

一个用于质子化水团簇的温度控制源已与高分辨率质谱联用,以研究冰团簇以及与氨和过氧化氢形成的化合物的稳定性模式随温度的变化情况。纯质子化冰的稳定性模式在21个和28个分子处呈现出两个众所周知的峰,并且在n = 55之前还有不太明显的结构。氨和过氧化氢不会破坏这种模式,而是使它的位置按若干个水分子的数量发生偏移。因此,添加剂融入了纯质子化冰的持久晶体结构中。基于这一结构信息,密度泛函理论计算表明,过氧化氢和氨占据二十面体21分子团簇的表面位置,而不是被困在中心。

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