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氟质子离子液体表现出离散分隔的纳米尺度溶剂域,并在添加伯醇后形成新的纳米尺度物体群体。

Fluorous protic ionic liquids exhibit discrete segregated nano-scale solvent domains and form new populations of nano-scale objects upon primary alcohol addition.

机构信息

CSIRO Materials Science and Engineering, Bag 10, Clayton, Vic. 3169, Australia.

出版信息

Phys Chem Chem Phys. 2013 May 28;15(20):7592-8. doi: 10.1039/c3cp44589e. Epub 2013 Apr 15.

Abstract

Fluorous protic ionic liquids (FPILS) containing a perfluorinated anion and hydrocarbon cation have been observed to segregate into nano-scale fluorocarbon, hydrocarbon and polar domains. The solubility and interactions of ethanol and butanol in a series of FPILs has been investigated by synchrotron source small and wide angle X-ray scattering. Nano-scale objects were found to be present within the binary solutions from low concentrations of FPILs in alcohols to around 40 to 80 wt% FPIL. The FPILs retain their fluorocarbon, hydrocarbon and polar domains in binary mixtures with alcohols in addition to the formation of nano-scale alcohol associated objects. For comparison, the influence of alcohols on the nano-scale segregation of analogous protic ionic liquids (PILs) which contained hydrocarbon anions in place of the perfluorinated anions was also investigated. The ethanol and butanol were miscible with the PILs across the full concentration range, with no evidence for the formation of analogous nano-scale objects. The FPILs are prospective solvents which may enable simultaneous solubility of fluorocarbon, hydrocarbon and polar species.

摘要

含全氟阴离子和碳氢阳离子的氟质子离子液体(FPILs)已被观察到会分离成纳米级的氟碳、碳氢和极性区域。通过同步辐射源小角和广角 X 射线散射研究了乙醇和正丁醇在一系列 FPILs 中的溶解度和相互作用。在从低浓度 FPIL 到约 40 至 80wt%FPIL 的醇中二元溶液中发现存在纳米级物体。FPILs 除了形成纳米级醇相关物体外,还在与醇的二元混合物中保留其氟碳、碳氢和极性区域。为了进行比较,还研究了醇对类似质子离子液体(PILs)的纳米级分离的影响,这些 PILs 用碳氢阴离子代替全氟阴离子。乙醇和正丁醇与 PILs 在整个浓度范围内完全混溶,没有形成类似纳米级物体的证据。FPILs 是有前景的溶剂,可实现氟碳、碳氢和极性物质的同时溶解。

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