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使用双位点大环受体对卤化锂盐进行选择性固液萃取。

Selective solid-liquid extraction of lithium halide salts using a ditopic macrobicyclic receptor.

作者信息

Mahoney Joseph M, Beatty Alicia M, Smith Bradley D

机构信息

Department of Chemistry and Biochemistry, University of Notre Dame, Notre Dame, Indiana 46556, USA.

出版信息

Inorg Chem. 2004 Nov 29;43(24):7617-21. doi: 10.1021/ic049066b.

Abstract

A ditopic salt receptor that is known to bind and extract solid NaCl, KCl, NaBr, and KBr into organic solution as their contact ion pairs is now shown by NMR and X-ray crystallography to bind and extract solid LiCl and LiBr as water-separated ion pairs. The receptor can transport these salts from an aqueous phase through a liquid organic membrane with a cation selectivity of K+ > Na+ > Li+. However, the selectivity order is strongly reversed when the receptor extracts solid alkali metal chlorides and bromides into organic solution. For a three-component mixture of solid LiCl, NaCl, and KCl, the ratio of salts extracted and complexed to the receptor in CDCl3 was 94:4:2, respectively. The same strong lithium selectivity was also observed in the case of a three-component mixture of solid LiBr, NaBr, and KBr where the ratio of extracted salts was 92:5:3. This observation is attributed to the unusually high solubility of lithium salts in organic solvents. The study suggests that ditopic receptors with an ability to extract solid salts as associated ion pairs may have application in separation processes.

摘要

一种双位点盐受体,已知其能将固体氯化钠、氯化钾、溴化钠和溴化钾作为接触离子对结合并萃取到有机溶液中,现在通过核磁共振和X射线晶体学表明,它能将固体氯化锂和溴化锂作为水合离子对结合并萃取。该受体可以将这些盐从水相通过液体有机膜进行传输,阳离子选择性为K⁺>Na⁺>Li⁺。然而,当受体将固体碱金属氯化物和溴化物萃取到有机溶液中时,选择性顺序会强烈反转。对于固体氯化锂、氯化钠和氯化钾的三元混合物,在CDCl₃中萃取并与受体络合的盐的比例分别为94:4:2。在固体溴化锂、溴化钠和溴化钾的三元混合物中也观察到了同样强的锂选择性,其中萃取盐的比例为92:5:3。这一观察结果归因于锂盐在有机溶剂中异常高的溶解度。该研究表明,具有以缔合离子对形式萃取固体盐能力的双位点受体可能在分离过程中有应用。

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