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通过中子衍射直接测定离子溶剂化作用。

Direct determination of ionic solvation from neutron diffraction.

作者信息

Narten A H, Hahn R L

出版信息

Science. 1982 Sep 24;217(4566):1249-50. doi: 10.1126/science.217.4566.1249.

Abstract

Much information on ionic solvation in electrolyte solutions has been inferred from macroscopic thermodynamic and transport properties and from spectroscopy. These ion-water interactions can now be probed directly and unambiguously by neutron diffraction. Such measurements have been done with neodymium trichloride solutions in heavy water that are identical in every respect except the isotopic state of the neodymium ions; these experiments yield in a straightforward manner the distribution of oxygen and deuterium atoms from the water molecules in the first hydration sphere of the neodymium ion. Each ion is surrounded by 8.6 oxygen atoms at a distance of 2.48 angstroms and 16.7 deuterium atoms at 3.13 angstroms indicating a well-defined first hydration sphere of water molecules, the deuterium atoms pointing away from the cation.

摘要

关于电解质溶液中离子溶剂化的许多信息是从宏观热力学和传输性质以及光谱学中推断出来的。现在可以通过中子衍射直接且明确地探测这些离子与水的相互作用。已对重水中的三氯化钕溶液进行了此类测量,除钕离子的同位素状态外,这些溶液在各方面都相同;这些实验以直接的方式得出了钕离子第一水合层中水分子的氧原子和氘原子的分布情况。每个离子周围有8.6个氧原子,距离为2.48埃,有16.7个氘原子,距离为3.13埃,这表明水分子形成了定义明确的第一水合层,氘原子指向远离阳离子的方向。

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