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碱金属离子-苯酚簇中阳离子-π相互作用与分子间氢键的竞争。I. 苯酚二聚体。

Competition between cation-pi interactions and intermolecular hydrogen bonds in alkali metal ion-phenol clusters. I. Phenol dimer.

作者信息

Vaden Timothy D, Lisy James M

机构信息

Department of Chemistry, University of Illinois at Urbana-Champaign, Urbana, Illinois 61801, USA.

出版信息

J Chem Phys. 2005 Aug 15;123(7):074302. doi: 10.1063/1.1995693.

Abstract

The competition between ion-molecule and molecule-molecule interactions was investigated in M+(phenol)2 cluster ions for M=Li, Na, K, and Cs. Infrared predissociation spectroscopy in the O-H stretch region was used to characterize the structure of the cluster ions. By adjusting the experimental conditions, it was possible to generate species where argon was additionally bound in order to investigate cold cluster ions. The spectra showed the presence of hydrogen bonding in the colder M+(phenol)2Ar cluster ions but the absence of hydrogen bonding in the warmer M+(phenol)2 species. For the cold species, the IR spectra were compared with minimum-energy ab initio calculations to elucidate the hydrogen-bonded structures. In the dominant hydrogen-bonded configurations observed experimentally, the phenol molecules form hydrogen-bonded dimers and the alkali-metal ions bind to the phenol via a cation-pi interaction with the aromatic ring. Increasing the strength of the cation-pi interaction by decreasing the ion size forces the distance between the phenol O-H groups to increase, thus weakening the intermolecular hydrogen bond. Free-energy differences of different configurations relative to the ground state demonstrate that hydrogen-bonded structures are enthalpically favored, while non-hydrogen-bonded structures are entropically favored and are thus observed in the warm cluster ions.

摘要

研究了M = Li、Na、K和Cs的M+(苯酚)₂簇离子中离子-分子与分子-分子相互作用之间的竞争。利用O-H伸缩区域的红外预解离光谱来表征簇离子的结构。通过调整实验条件,可以生成额外结合氩气的物种,以便研究冷簇离子。光谱显示,在较冷的M+(苯酚)₂Ar簇离子中存在氢键,但在较温暖的M+(苯酚)₂物种中不存在氢键。对于冷物种,将红外光谱与最低能量的从头算计算进行比较,以阐明氢键结构。在实验观察到的主要氢键构型中,苯酚分子形成氢键二聚体,碱金属离子通过与芳环的阳离子-π相互作用与苯酚结合。通过减小离子尺寸来增加阳离子-π相互作用的强度,会迫使苯酚O-H基团之间的距离增加,从而削弱分子间氢键。相对于基态,不同构型的自由能差异表明,氢键结构在焓上是有利的,而非氢键结构在熵上是有利的,因此在温暖的簇离子中观察到。

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