水团簇中碱金属离子的结构和光谱特征

IF 1.1 4区 物理与天体物理 Q3 PHYSICS, MULTIDISCIPLINARY
Yu. V. Novakovskaya
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引用次数: 1

摘要

利用B3LYP交换相关泛函和扩展双ζ基集对Met = Li、Na和K、n = 20-55时的Met+(H2O)n簇进行密度泛函分析,揭示了碱金属离子水合物在2000-4000 cm-1红外吸收光谱范围内的主要结构基序及其指纹图谱。离子的水化结构由共轭氢键环和扩展有序氢键序列之间的平衡决定。后者的扩展随着离子有效半径的增加而减小,这反映在同形结构环内OH振荡子耦合的更强局域化和OH拉伸域内各自的特征频率的移位。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Structural and Spectral Signatures of Alkali Metal Ions in Water Clusters

Structural and Spectral Signatures of Alkali Metal Ions in Water Clusters

Analysis of the results of nonempirical simulations of Met+(H2O)n clusters with Met = Li, Na, and K, and n = 20–55 carried out at the density functional level with B3LYP exchange-correlation functional and extended double-zeta basis sets revealed the prevailing structure motifs of the aqua complexes of alkali metal ions and their fingerprints in the infrared absorption spectra in the range of 2000–4000 cm–1. The hydration structures of the ions are found to be predetermined by the balance between the conjugated H-bonded rings and extended ordered H-bonded sequences. The extension of the latter is shown to decrease with an increase in the effective radius of the ion, which is reflected in the stronger localization of the coupling of OH oscillators within the homodromic structural rings and the respective shift in the characteristic frequencies within the OH stretching domain.

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来源期刊
Physics of Wave Phenomena
Physics of Wave Phenomena PHYSICS, MULTIDISCIPLINARY-
CiteScore
2.50
自引率
21.40%
发文量
43
审稿时长
>12 weeks
期刊介绍: Physics of Wave Phenomena publishes original contributions in general and nonlinear wave theory, original experimental results in optics, acoustics and radiophysics. The fields of physics represented in this journal include nonlinear optics, acoustics, and radiophysics; nonlinear effects of any nature including nonlinear dynamics and chaos; phase transitions including light- and sound-induced; laser physics; optical and other spectroscopies; new instruments, methods, and measurements of wave and oscillatory processes; remote sensing of waves in natural media; wave interactions in biophysics, econophysics and other cross-disciplinary areas.
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