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氢键网络在液态水中围绕氮氧自由基的结构和原子分子分析。

Structural and atoms-in-molecules analysis of hydrogen-bond network around nitroxides in liquid water.

机构信息

UMR 6264 Laboratoire Chimie Provence, Faculté des Sciences de Saint-Jérôme, Case 521, Avenue Escadrille Normandie-Niemen, 13397 Marseille Cedex 20, France.

出版信息

J Chem Phys. 2010 Sep 28;133(12):124508. doi: 10.1063/1.3478999.

Abstract

In this study, we investigated the hydrogen-bond network patterns involving the NO moieties of five small nitroxides in liquid water by analyzing nanosecond scale molecular dynamics trajectories. To this end, we implemented two types of hydrogen-bond definitions, based on electronic structure, using Bader's atoms-in-molecules analysis and based on geometric criteria. In each definition framework, the nitroxide/water hydrogen-bond networks appear very variable from a nitroxide to another. Moreover, each definition clearly leads to a different picture of nitroxide hydration. For instance, the electronic structure-based definition predicts a number of hydrogen bonds around the nitroxide NO moiety usually larger than geometric structure-based ones. One particularly interesting result is that the strength of a nitroxide/water hydrogen bond does not depend on its linearity, leading us to question the relevance of geometric definition based on angular cutoffs to study this type of hydrogen bond. Moreover, none of the hydrogen-bond definitions we consider in the present study is able to quantitatively correlate the strength of nitroxide/water hydrogen-bond networks with the aqueous nitroxide spin properties. This clearly exhibits that the hydrogen-bonding concept is not reliable enough to draw quantitative conclusions concerning such properties.

摘要

在这项研究中,我们通过分析纳秒级分子动力学轨迹,研究了涉及五个小氮氧自由基中 NO 部分的氢键网络模式在液态水中的存在情况。为此,我们使用了两种基于电子结构的氢键定义方法,一种是基于 Bader 的分子中原子分析,另一种是基于几何标准。在每种定义框架中,氮氧自由基/水氢键网络从一个氮氧自由基到另一个氮氧自由基的变化非常大。此外,每种定义方法都清楚地给出了氮氧自由基水合作用的不同图像。例如,基于电子结构的定义预测氮氧自由基 NO 部分周围的氢键数量通常大于基于几何结构的定义。一个特别有趣的结果是,氮氧自由基/水氢键的强度并不取决于其线性,这使我们质疑基于角度截止的几何定义在研究这种类型氢键时的相关性。此外,我们在本研究中考虑的氢键定义都无法定量地将氮氧自由基/水氢键网络的强度与水合氮氧自由基的自旋性质联系起来。这清楚地表明,氢键概念不够可靠,无法对这些性质进行定量推断。

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