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冷负离子水分子团的可观测量对团簇热历史的响应。

Response of observables for cold anionic water clusters to cluster thermal history.

机构信息

Eötvös Loránd University, Department of Physical Chemistry, Budapest 112, P.O. Box 32, H-1518 Hungary.

出版信息

J Phys Chem A. 2010 Feb 18;114(6):2331-7. doi: 10.1021/jp908876f.

Abstract

We have used mixed quantum classical molecular dynamics simulations to explore the role of structural relaxation when binding an excess electron to neutral water clusters. The structural and spectral properties of the water cluster anions were investigated as a function of the size (n = 45 and 104), nominal temperature (T(nom) = 50, 100, and 150 K), and preparation method of the parent neutral clusters. In particular, we consider two different protocols for preparing the initial neutral clusters, which differ markedly in their thermal history. In the first, warm equilibrium neutral clusters are gradually quenched to increasingly lower temperature. In the second, neutral clusters are formed spontaneously at approximately 0 K and then warmed to the same target temperatures, yielding inherently metastable, nonequilibrium structures. Electron attachment to these alternative sets of clusters shows that below a critical temperature (approximately 200 K), the metastable water clusters bind a surface state excess electron significantly more strongly than the quenched, equilibrium clusters. The structural analysis indicates that these cluster anions with larger vertical detachment energies (VDEs) more frequently stabilize the electron by double-acceptor-type water molecules and exhibit a weak temperature dependence of the VDE compared with the quenched clusters. These results suggest that the alternative classes of cluster anions seen experimentally may reflect differences in the thermal history of such clusters.

摘要

我们使用混合量子经典分子动力学模拟来探索在中性水分子团簇上结合过量电子时结构弛豫的作用。我们研究了水簇阴离子的结构和光谱性质作为尺寸(n = 45 和 104)、名义温度(T(nom) = 50、100 和 150 K)以及母体中性团簇的制备方法的函数。特别是,我们考虑了两种不同的方案来制备初始中性团簇,它们在热历史上有显著差异。在第一种方案中,逐渐将温暖平衡的中性团簇冷却到越来越低的温度。在第二种方案中,中性团簇在大约 0 K 时自发形成,然后加热到相同的目标温度,从而产生固有亚稳、非平衡结构。电子对这些替代的团簇的附加表明,在临界温度(约 200 K)以下,亚稳水分子团簇比冷却的平衡团簇更强烈地结合表面状态的过量电子。结构分析表明,这些具有较大垂直离解能(VDE)的簇阴离子更频繁地通过双受体型水分子稳定电子,并且与冷却的簇相比,VDE 具有较弱的温度依赖性。这些结果表明,实验中观察到的替代类别的簇阴离子可能反映了此类簇的热历史差异。

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