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具有可变组成的膦氯汞酸室温离子液体。

Phosphonium chloromercurate room temperature ionic liquids of variable composition.

机构信息

QUILL, School of Chemistry and Chemical Engineering, The Queen's University of Belfast , Belfast, Northern Ireland (U.K.) BT9 5AG.

出版信息

Inorg Chem. 2013 Dec 16;52(24):13997-4009. doi: 10.1021/ic401676r. Epub 2013 Nov 25.

Abstract

The system trihexyl(tetradecyl)phosphonium ([P66614]Cl)/mercury chloride (HgCl2) has been investigated by varying the stoichiometric ratios from 4:1 to 1:2 (25, 50, 75, 100, 150, and 200 mol % HgCl2). All investigated compositions turn out to give rise to ionic liquids (ILs) at room temperature. The prepared ionic liquids offer the possibility to study the structurally and compositionally versatile chloromercurates in a liquid state at low temperatures in the absence of solvents. [P66614]2[HgCl4] is a simple IL with one discrete type of anion, while [P66614]{HgCl3} (with {} indicating a polynuclear arrangement) is an ionic liquid with a variety of polyanionic species, with Hg2Cl6 apparently being the predominant building block. [P66614]2[Hg3Cl8] and [P66614][Hg2Cl5] appear to be ILs at ambient conditions but lose HgCl2 when heated in a vacuum. For the liquids with the compositions 4:1 and 4:3, more than two discrete ions can be evidenced, namely, P66614, HgCl4, and Cl(-) and P66614, HgCl4, and the polynuclear {HgCl3}(-), respectively. The different stoichiometric compositions were characterized by (199)Hg NMR, Raman- and UV-vis spectroscopy, and cyclic voltammetry, among other techniques, and their densities and viscosities were determined. The [P66614]Cl/HgCl2 system shows similarities to the well-known chloroaluminate ILs (e.g., decrease in viscosity with increasing metal content after addition of more than 0.5 mol of HgCl2/mol [P66614]Cl, increasing density with increasing metal content, and the likely formation of polynuclear/polymeric/polyanionic species) but offer the advantage that they are air and water stable.

摘要

研究了三辛基(十四烷基)膦([P66614]Cl)/氯化汞(HgCl2)体系,通过改变化学计量比(25、50、75、100、150 和 200 mol% HgCl2)来进行研究。所有研究的组成在室温下都变成了离子液体(ILs)。制备的离子液体为在低温下无溶剂的情况下研究结构和组成多样的氯汞酸盐提供了可能。[P66614]2[HgCl4]是一种具有单一离散阴离子类型的简单 IL,而[P66614]{HgCl3}({}表示多核排列)是一种具有多种多阴离子物种的离子液体,其中Hg2Cl6显然是主要的结构单元。[P66614]2[Hg3Cl8]和[P66614][Hg2Cl5]在环境条件下似乎是 IL,但在真空中加热时会失去 HgCl2。对于组成比为 4:1 和 4:3 的液体,可以证明存在超过两种离散离子,即P66614HgCl4和 Cl(-)以及P66614HgCl4和多核{HgCl3}(-)。不同的化学计量组成通过(199)Hg NMR、拉曼和 UV-vis 光谱以及循环伏安法等技术进行了表征,并测定了它们的密度和粘度。[P66614]Cl/HgCl2 体系与众所周知的氯铝酸盐 IL (例如,添加超过 0.5 mol HgCl2/mol [P66614]Cl 后,粘度随金属含量的增加而降低,密度随金属含量的增加而增加,以及可能形成多核/聚合物/多阴离子物种)相似,但具有空气和水稳定的优势。

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