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Synthesis, Characterization and Physical-Chemical Properties of Room Temperature Ionic Liquids with a variety of Cations, Paired With Bis(trifluoromethylsulfonyl)imide Anion

机译:具有多种阳离子的室温离子液体的合成,表征和物理化学性质,与双(三氟甲基磺酰基)酰亚胺阴离子配对

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摘要

This thesis contains two main parts: synthesis of ionic liquids and their precursors, and measurement of the physical-chemical properties of the ionic liquids synthesized.udThe first part describes a study of the successful synthesis of 22 ionic liquids and their precursors, including 12 novel compounds ([RC1im][X] and [RC1pyrr][X] where R=C4, C5, C2OC2C1, SiOSiC1, (SiO)2SiC1, X=Cl, NTf2). In this study a reliable and rigorous method for the synthesis of ionic liquids in a good yield and high quality was developed. The ionic liquids synthesized contained a variety of cations containing alkyl, ether, disiloxane and trisiloxane side chains. All the ionic liquids contained the bis(trifluoromethylsulfonyl) imide anion.udThe second part of the project was the study of the physical-chemical properties of the ionic liquids synthesized. Understanding these physical-chemical properties is required before any applications can proceed. The polarity, density, thermal stability, viscosity, conductivity and diffusion coefficients of the ionic liquids were measured and described. The Kamlet-Taft [Symbol appears here. To view, please open pdf attachment] values of the ionic liquids are dominated by the nature of cations whereas the β values are controlled by the nature of the anion. The polarizability values, π* were lowered by having siloxane side chains in comparison to alkyl and ether side chains. Ionic liquids with an ether side chain showed the highest density of those studied. The thermal stabilities of the ionic liquids followed the order alkane > ether > disiloxane > trisiloxane substituent. From a transport property point of view, it can be concluded that the less viscous the ionic liquids, the faster the movement and higher the diffusion coefficient of the ions.
机译:本论文包括两个主要部分:离子液体及其前体的合成,以及所合成离子液体的物理化学性质的测量。 ud第一部分描述了22种离子液体及其前体的成功合成研究,其中包括12种。新化合物([RC1im] [X]和[RC1pyrr] [X],其中R = C4,C5,C2OC2C1,SiOSiC1,(SiO)2SiC1,X = Cl,NTf2)。在这项研究中,开发了一种可靠且严格的方法,以高收率和高质量合成了离子液体。合成的离子液体包含各种阳离子,这些阳离子包含烷基,醚,二硅氧烷和三硅氧烷侧链。所有的离子液体都含有双(三氟甲基磺酰基)酰亚胺阴离子。 ud该项目的第二部分是对合成的离子液体的物理化学性质的研究。在进行任何应用之前,必须了解这些物理化学性质。测量并描述了离子液体的极性,密度,热稳定性,粘度,电导率和扩散系数。 Kamlet-Taft [符号出现在这里。要查看,请打开pdf附件]离子液体的值主要取决于阳离子的性质,而β值则取决于阴离子的性质。与烷基和醚侧链相比,具有硅氧烷侧链可降低极化率值π*。具有醚侧链的离子液体显示出最高的密度。离子液体的热稳定性遵循烷烃>醚>二硅氧烷>三硅氧烷取代基的顺序。从传输性质的角度,可以得出结论,离子液体的粘度越小,离子的运动越快并且扩散系数越高。

著录项

  • 作者

    Ab Rani Mohd Azri;

  • 作者单位
  • 年度 2012
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
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