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浓水溶液中碱金属离子水合结构的X射线和中子散射研究。

X-ray and neutron scattering studies of the hydration structure of alkali ions in concentrated aqueous solutions.

作者信息

Ansell S, Barnes A C, Mason P E, Neilson G W, Ramos S

机构信息

ISIS Division, Rutherford Appleton Laboratory, Chilton, Didcot, OX11 0QX, UK.

出版信息

Biophys Chem. 2006 Dec 1;124(3):171-9. doi: 10.1016/j.bpc.2006.04.018. Epub 2006 May 11.

Abstract

The presence of ions in water provides a rich and varied environment in which many natural processes occur with important consequences in biology, geology and chemistry. This article will focus on the structural properties of ions in water and it will be shown how the 'difference' methods of neutron diffraction with isotopic substitution (NDIS) and anomalous X-ray diffraction (AXD) can be used to obtain direct information regarding the radial pair distribution functions of many cations and anions in solution. This information can subsequently be used to calculate coordination numbers and to determine ion-water conformation in great detail. As well as enabling comparisons to be made amongst ions in particular groups in the periodic table, such information can also be contrasted with results provided by molecular dynamics (MD) simulation techniques. To illustrate the power of these 'difference' methods, reference will be made to the alkali group of ions, all of which have been successfully investigated by the above methods, with the exception of the radioactive element francium. Additional comments will be made on how NDIS measurements are currently being combined with MD simulations to determine the structure around complex ions and molecules, many of which are common in biological systems.

摘要

水中离子的存在提供了一个丰富多样的环境,许多自然过程在此环境中发生,并在生物学、地质学和化学领域产生重要影响。本文将聚焦于水中离子的结构特性,并展示如何利用同位素取代中子衍射(NDIS)和反常X射线衍射(AXD)这两种“差值”方法,获取有关溶液中多种阳离子和阴离子径向对分布函数的直接信息。这些信息随后可用于计算配位数,并详细确定离子与水的构象。除了能够对周期表中特定族的离子进行比较外,此类信息还可与分子动力学(MD)模拟技术提供的结果进行对比。为说明这些“差值”方法的强大之处,将以离子碱金属族为例,除放射性元素钫外,上述所有方法均已成功对其进行了研究。此外,还将对目前如何将NDIS测量与MD模拟相结合以确定复杂离子和分子周围的结构进行补充说明,其中许多离子和分子在生物系统中很常见。

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