首页> 外文期刊>Journal of Molecular Liquids >Fluoroalkyl-functional imidazoles and imidazolium-based ionic liquids prepared via thiol-ene/yne click chemistry
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Fluoroalkyl-functional imidazoles and imidazolium-based ionic liquids prepared via thiol-ene/yne click chemistry

机译:氟代烷基官能咪唑和基于咪唑鎓的离子液体通过硫醇-NEE / YNE键入化学

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A fluorinated thiol was systematically investigated against a diverse set of -ene- and -yne-bearing imidazole and imidazolium substrates in the pursuit of new cation-fluorinated, omniphobic (hydrophobic and oleophobic) ionic liquids for aerospace applications. Compounds were prepared using UV-initiated click chemistry at quantitative conversion and purified with relative ease. Seven ionic liquids were synthesized and have isolated yields ranging from 74% to >99%. Five of the new cation-fluorinated ionic liquids are hydrophobic and two are liquids at room temperature. In addition to hydrophobicity, the seven ionic liquids' solubilities were qualitatively examined across a wide spectrum of conventional organic solvents. Of note, the majority of the prepared ionic liquids are insoluble in water and hexanes yet soluble in methanol, acetone, acetonitrile, and dichloromethane. In addition to intriguing solubility properties, the ionic liquids in this study have high densities without the incorporation of heavy atoms, ranging from 1.596 to 1.924 g cm(-3). The fluorinated salts also show good short-term thermal stability in air, with decomposition temperatures ranging from 215 degrees C to 320 degrees C. Other relevant characterization methods include spectroscopy, thermal analysis, and physical property measurements where appropriate. The X-ray crystal structure of a divalent, cation-fluorinated ionic liquid from this study was also obtained and shows unique fluorous domains in the extended structure, providing valuable insight into the materials' physical properties. This work highlights a family of compounds moving towards omniphobic ionic liquids yielding potential possibilities for future applications. Published by Elsevier B.V.
机译:在追求用于航空航天应用的新的氟化,无氨基(疏水和疏化和疏化)离子液中,系统地研究氟化硫醇。追求用于航空航天应用的新型碳氟化,无霉菌(疏水和疏化)离子液体。使用UV引发的咔哒化学在定量转化中制备化合物,并以相对容易纯化。合成七个离子液体,并具有74%至> 99%的分离的产率。五种新的阳离子氟化离子液体是疏水性的,并且两个是室温下的液体。除了疏水性之外,七种离子液体的溶解度在宽的常规有机溶剂上进行了定性检查。值得注意的是,大部分制备的离子液体不溶于水和己烷溶于甲醇,丙酮,乙腈和二氯甲烷中。除了有趣的溶解度特性外,该研究中的离子液体具有高密度,无需掺入重原子,范围为1.596至1.924g cm(-3)。氟化盐在空气中也显示出良好的短期热稳定性,分解温度范围为215℃至320℃。其他相关表征方法包括适当的光谱,热分析和物理性能测量。还获得了来自该研究的二价阳离子氟化离子液的X射线晶体结构,并在延长的结构中显示出独特的氟域,为材料的物理性质提供有价值的洞察力。这项工作突出了一系列化合物,朝向乌内白离子液体移动,产生未来应用的潜在可能性。由elsevier b.v出版。

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