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Ar标记对H3O(+)臂(m = 0 - 3)诱导产生的振动光谱特征

Features in Vibrational Spectra Induced by Ar-Tagging for H3O(+)Arm, m = 0-3.

作者信息

Li Jheng-Wei, Morita Masato, Takahashi Kaito, Kuo Jer-Lai

机构信息

Institute of Atomic and Molecular Sciences, Academia Sinica , Taipei 10617, Taiwan.

Department of Physics, National Taiwan University , Taipei 10617, Taiwan.

出版信息

J Phys Chem A. 2015 Nov 5;119(44):10887-92. doi: 10.1021/acs.jpca.5b08898. Epub 2015 Oct 22.

Abstract

Understanding the spectral features for solvated hydronium has been hindered due to the strong and complex vibrational couplings that lead to broad bands in the aqueous phase. In this work, utilizing ab initio vibrational calculations, we determine how the vibrational couplings induced by the Ar microsolvation in H3O(+)Arm m = 0-3 affect the observed spectra. With theoretical peak intensities and peak positions, we assign the experimental spectra. We also show that an increase in the number of Ar atoms results in an anticooperative blue shifting in the Ar-tagged OH stretching bands. This change in peak position of the OH stretching fundamental modulates the Fermi resonance with the bending overtone. This is observed as a distinct doublet feature at 3200 cm(-1) with varying intensities for H3O(+)Ar2 and H3O(+)Ar3. The coupling between the in-plane rotation of the hydronium and the bending modes of H3O(+) leads to the existence of a strong association bands around 1900 cm(-1).

摘要

由于导致水相中出现宽带的强且复杂的振动耦合,对溶剂化水合氢离子光谱特征的理解受到了阻碍。在这项工作中,我们利用从头算振动计算,确定了H3O(+)Arm(m = 0 - 3)中由氩微溶剂化诱导的振动耦合如何影响观测光谱。通过理论峰值强度和峰值位置,我们对实验光谱进行了归属。我们还表明,氩原子数量的增加会导致氩标记的OH伸缩带出现反协同蓝移。OH伸缩基频峰值位置的这种变化调节了与弯曲泛音的费米共振。这在3200 cm(-1)处表现为一个明显的双峰特征,对于H3O(+)Ar2和H3O(+)Ar3,其强度各不相同。水合氢离子的面内旋转与H3O(+)的弯曲模式之间的耦合导致在1900 cm(-1)附近存在一个强缔合带。

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