首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Virtually Nonexistent Correlation between the OH Stretching Frequency and the Instantaneous Geometry in the Short Hydrogen Bond of Sodium Hydrogen Bis(sulfate): Advanced Chemometrics Analysis
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Virtually Nonexistent Correlation between the OH Stretching Frequency and the Instantaneous Geometry in the Short Hydrogen Bond of Sodium Hydrogen Bis(sulfate): Advanced Chemometrics Analysis

机译:双硫酸氢钠短氢键中OH延伸频率与瞬时几何构型之间几乎不存在相关性:高级化学计量学分析

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摘要

We examined the correlation between the dynamically sampled anharmonic frequency of the OH stretching motion and the corresponding instantaneous geometric parameters associated with the structure of crystalline sodium hydrogen bis(sulfate), which is a benchmark system with an extremely short hydrogen bond. We analyzed the trajectory obtained by a conventional Car-Parrinello molecular dynamics simulation, followed by an a posterioriquantization of the proton motion. For statistical analysis we applied the established methodologies of multiple linear regression, principal component analysis, principal component regression, and Kohonen neural networks. No simple correlation scheme between the OH stretching frequency and any particular geometry parameter (or their combination) was found. In comparison to the established correlation schemes (e.g., Mikenda and Novak) that consider a series of systems, our study provides a complementary insight into the nature of hydrogen bonding of a single system, in the sense that it considers the important aspects of fluctuations of the environment and the resulting broadening of the OH stretching band, which cannot be adequately assessed by experiment. The absence of appreciable correlations gives strong evidence of the extreme complexity of short hydrogen bonding.
机译:我们检查了OH拉伸运动的动态采样非谐频率与与结晶双氢硫酸氢钠晶体结构相关的相应瞬时几何参数之间的相关性,该结构是氢键极短的基准系统。我们分析了通过常规的Car-Parrinello分子动力学模拟获得的轨迹,然后对质子运动进行了后验量化。对于统计分析,我们应用了建立的多元线性回归,主成分分析,主成分回归和Kohonen神经网络方法。在OH拉伸频率和任何特定的几何参数(或它们的组合)之间没有发现简单的相关方案。与考虑了一系列系统的已建立的相关方案(例如Mikenda和Novak)相比,我们的研究提供了对单个系统氢键性质的补充洞察,从某种意义上讲,它考虑了氢键波动的重要方面。环境以及由此产生的OH拉伸带的扩宽,这无法通过实验进行充分评估。缺乏明显的相关性为短氢键的极端复杂性提供了有力的证据。

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