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提高二氧化碳在离子液体中的溶解度。

Improving carbon dioxide solubility in ionic liquids.

作者信息

Muldoon Mark J, Aki Sudhir N V K, Anderson Jessica L, Dixon Janeille K, Brennecke Joan F

机构信息

Department of Chemical and Biomolecular Engineering, University of Notre Dame, Notre Dame, Indiana 46556, USA.

出版信息

J Phys Chem B. 2007 Aug 2;111(30):9001-9. doi: 10.1021/jp071897q. Epub 2007 Jul 4.

Abstract

Previously we showed that CO2 could be used to extract organic molecules from ionic liquids without contamination of the ionic liquid. Consequently a number of other groups demonstrated that ionic liquid/CO2 biphasic systems could be used for homogeneously catalyzed reactions. Large differences in the solubility of various gases in ionic liquids present the possibility of using them for gas separations. More recently we and others have shown that the presence of CO2 increases the solubility of other gases that are poorly soluble in the ionic liquid phase. Therefore, a knowledge and understanding of the phase behavior of these ionic liquid/CO2 systems is important. With the aim of finding ionic liquids that improve CO2 solubility and gaining more information to help us understand how to design CO2-philic ionic liquids, we present the low- and high-pressure measurements of CO2 solubility in a range of ionic liquids possessing structures likely to increase the solubility of CO2. We examined the CO2 solubility in a number of ionic liquids with systematic increases in fluorination. We also studied nonfluorinated ionic liquids that have structural features known to improve CO2 solubility in other compounds such as polymers, for example, carbonyl groups and long alkyl chains with branching or ether linkages. Results show that ionic liquids containing increased fluoroalkyl chains on either the cation or anion do improve CO2 solubility when compared to less fluorinated ionic liquids previously studied. It was also found that it was possible to obtain similar, high levels of CO2 solubility in nonfluorous ionic liquids. In agreement with our previous results, we found that the anion frequently plays a key role in determining CO2 solubility in ionic liquids.

摘要

此前我们表明,二氧化碳可用于从离子液体中萃取有机分子而不污染离子液体。因此,其他一些研究小组证明,离子液体/二氧化碳双相体系可用于均相催化反应。各种气体在离子液体中的溶解度差异很大,这使得利用它们进行气体分离成为可能。最近,我们和其他研究人员表明,二氧化碳的存在会增加在离子液相中溶解度较差的其他气体的溶解度。因此,了解和掌握这些离子液体/二氧化碳体系的相行为很重要。为了找到能提高二氧化碳溶解度的离子液体,并获取更多信息以帮助我们理解如何设计亲二氧化碳的离子液体,我们给出了一系列具有可能增加二氧化碳溶解度结构的离子液体中二氧化碳溶解度的低压和高压测量结果。我们研究了随着氟化程度系统增加的多种离子液体中的二氧化碳溶解度。我们还研究了具有已知能提高二氧化碳在其他化合物(如聚合物)中溶解度的结构特征的非氟化离子液体,例如羰基以及带有支链或醚键的长烷基链。结果表明,与之前研究的氟化程度较低的离子液体相比,阳离子或阴离子上含氟烷基链增加的离子液体确实能提高二氧化碳溶解度。还发现,在无氟离子液体中也有可能获得类似的高二氧化碳溶解度。与我们之前的结果一致,我们发现阴离子在决定二氧化碳在离子液体中的溶解度方面常常起关键作用。

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