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扩展X射线吸收精细结构(EXAFS)研究溶解于离子液体和低共熔溶剂中的金属盐的形态。

EXAFS study into the speciation of metal salts dissolved in ionic liquids and deep eutectic solvents.

作者信息

Hartley Jennifer M, Ip Chung-Man, Forrest Gregory C H, Singh Kuldip, Gurman Stephen J, Ryder Karl S, Abbott Andrew P, Frisch Gero

机构信息

TU Bergakademie Freiberg , Institut für Anorganische Chemie, Leipziger Str. 29, 09596 Freiberg, Germany.

出版信息

Inorg Chem. 2014 Jun 16;53(12):6280-8. doi: 10.1021/ic500824r. Epub 2014 Jun 5.

Abstract

The speciation of metals in solution controls their reactivity, and this is extremely pertinent in the area of metal salts dissolved in ionic liquids. In the current study, the speciation of 25 metal salts is investigated in four deep eutectic solvents (DESs) and five imidazolium-based ionic liquids using extended X-ray absorption fine structure. It is shown that in diol-based DESs M(I) ions form MCl2 and MCl3 complexes, while all M(II) ions form MCl4 complexes, with the exception of Ni(II), which exhibits a very unusual coordination by glycol molecules. This was also found in the X-ray crystal structure of the compound [Ni(phen)2(eg)]Cl2·2eg (eg = ethylene glycol). In a urea-based DES, either pure chloro or chloro-oxo coordination is observed. In [C6mim][Cl] pure chloro complexation is also observed, but coordination numbers are smaller (typically 3), which can be explained by the long alkyl chain of the cation. In [C2mim][SCN] metal ions are entirely coordinated by thiocyanate, either through the N or the S atom, depending on the hardness of the metal ion according to the hard-soft acid-base principle. With weaker coordinating anions, mixed coordination between solvent and solute anions is observed. The effect of hydrate or added water on speciation is insignificant for the diol-based DESs and small in other liquids with intermediate or strong ligands. One of the main findings of this study is that, with respect to metal speciation, there is no fundamental difference between deep eutectic solvents and classic ionic liquids.

摘要

溶液中金属的形态决定了它们的反应活性,这在溶解于离子液体的金属盐领域极为重要。在本研究中,使用扩展X射线吸收精细结构研究了25种金属盐在四种深共熔溶剂(DESs)和五种咪唑基离子液体中的形态。结果表明,在二醇基DESs中,M(I)离子形成MCl2MCl3配合物,而所有M(II)离子形成MCl4配合物,但Ni(II)除外,它通过二醇分子表现出非常不寻常的配位。这也在化合物[Ni(phen)2(eg)]Cl2·2eg(eg = 乙二醇)的X射线晶体结构中发现。在基于尿素的DES中,观察到纯氯或氯-氧配位。在[C6mim][Cl]中也观察到纯氯络合,但配位数较小(通常为3),这可以用阳离子的长烷基链来解释。在[C2mim][SCN]中,金属离子完全由硫氰酸盐配位,根据硬软酸碱原理,取决于金属离子的硬度,通过N或S原子配位。对于配位较弱的阴离子,观察到溶剂和溶质阴离子之间的混合配位。水合物或添加水对形态的影响对于二醇基DESs不显著,而在其他具有中等或强配体的液体中较小。本研究的主要发现之一是,就金属形态而言,深共熔溶剂和经典离子液体之间没有根本区别。

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