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一种“液滴中的簇”方法可用于计算红外光谱,从而确定酸性水溶液中的质子转移模式。

A 'clusters-in-liquid' method for calculating infrared spectra identifies the proton-transfer mode in acidic aqueous solutions.

机构信息

The Fritz Haber Research Center, Institute of Chemistry, The Hebrew University of Jerusalem, Jerusalem 91904, Israel.

出版信息

Nat Chem. 2013 Jan;5(1):29-35. doi: 10.1038/nchem.1503. Epub 2012 Nov 25.

Abstract

In liquid water the transfer of an excess proton between two water molecules occurs through the Zundel cation, H(2)O···H(+)···OH(2). The proton-transfer mode is the asymmetric stretch of the central O···H(+)···O moiety, but there is no consensus on its identification in the infrared spectra of acidic aqueous solutions. Also, in experiments with protonated gas-phase water clusters, its position shifts with cluster size, which makes its relationship with solution spectra unclear. Here we introduce a 'clusters-in-liquid' approach for calculating the infrared spectrum from any set of charges, even single protons. We apply this procedure to multistate empirical valence-bond trajectories of protonated liquid water and to ab initio molecular dynamics of the protonated water dimer and hexamer in the gas phase. The calculated proton-transfer mode is manifested in both systems as a peak near 1,740 cm(-1), in quantitative agreement with a band of similar frequency in the experimental infrared spectrum of protonated water clusters.

摘要

在液态水中,多余的质子在两个水分子之间的传递是通过 Zundel 阳离子,H(2)O···H(+)···OH(2) 发生的。质子转移模式是中心 O···H(+)···O 部分的不对称拉伸,但在酸性水溶液的红外光谱中,其识别尚无共识。此外,在质子化气相水团簇的实验中,其位置随团簇大小而变化,这使得其与溶液光谱的关系不明确。在这里,我们引入了一种“液中团簇”的方法,用于从任何电荷集,甚至单个质子,计算红外光谱。我们将此过程应用于质子化液态水的多态经验价键轨迹以及气相中质子化水二聚体和六聚体的从头算分子动力学。在这两个系统中,质子转移模式都表现为 1740cm(-1)附近的一个峰值,与质子化水团簇实验红外光谱中类似频率的带完全一致。

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