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水中水合质子的红外光谱。

Infrared Spectrum of the Hydrated Proton in Water.

作者信息

Xu Jianqing, Zhang Yong, Voth Gregory A

机构信息

Department of Chemistry, James Franck Institute and Computation Institute, University of Chicago, 5735 South Ellis Avenue, Chicago, Illinois 60637, United States.

出版信息

J Phys Chem Lett. 2011 Jan 20;2(2):81-6. doi: 10.1021/jz101536b. Epub 2010 Dec 23.

Abstract

Reactive molecular dynamics simulations have been utilized to calculate the infrared (IR) spectra of acidic HCl solutions of varying concentration with the goal of achieving a better understanding of the spectral features of the hydrated excess protons in bulk water. To incorporate the essential physics of the hydrated proton, we carried out the simulations using the specialized self-consistent iterative multistate empirical valence bond (SCI-MS-EVB) method, which is a form of multiconfigurational (reactive) molecular dynamics. After the pure water absorption background was removed, the calculated difference spectra are in good agreement with prior experimental results. The continuous broad absorption band in the acidic IR spectrum is, for the first time, interpreted based on the concept of a dynamically distorted Eigen cation, H9O4(+), which has been shown to provide the most accurate description for the charge defect character of the hydrated excess proton in liquid water.

摘要

为了更好地理解大量水中水合过量质子的光谱特征,已利用反应分子动力学模拟来计算不同浓度酸性HCl溶液的红外(IR)光谱。为了纳入水合质子的基本物理性质,我们使用专门的自洽迭代多态经验价键(SCI-MS-EVB)方法进行了模拟,该方法是一种多构型(反应性)分子动力学形式。去除纯水吸收背景后,计算得到的差谱与先前的实验结果吻合良好。酸性红外光谱中连续的宽吸收带首次基于动态扭曲的本征阳离子H9O4(+)的概念进行了解释,该阳离子已被证明能最准确地描述液态水中水合过量质子的电荷缺陷特征。

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