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One-Dimensional Adiabatic Model Approach for Calculating Progressions in Vibrational Spectra of Ion-Water Complexes

Authors :
Bryan V. Henderson
Kenneth D. Jordan
Source :
The journal of physical chemistry. A. 123(32)
Publication Year :
2019

Abstract

Many water-anion complexes of the form X-·(H2O), where X- is a polyatomic anion, display a peak progression in the OH stretch region of the vibrational spectra with spacings of 65-85 cm-1. These progressions result from strong anharmonic coupling between the OH stretch and a low-frequency intermolecular rock vibration. In this study, we calculate these progressions in HCO2-·(H2O), NO3-·(H2O), and CS2-·(H2O) by use of a one-dimensional adiabatic model with rock potentials generated from ab initio energies and frequencies. The importance of using a geometry-dependent reduced mass in calculating the peak spacings is demonstrated. We find that the one-dimensional adiabatic model is more successful in predicting peak spacings in the spectrum of HCO2-·(H2O) than for NO3-·(H2O), for which the rock vibration is highly anharmonic.

Details

ISSN :
15205215
Volume :
123
Issue :
32
Database :
OpenAIRE
Journal :
The journal of physical chemistry. A
Accession number :
edsair.doi.dedup.....7fda3b13f1016120abd9ad75a8133e19