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二酮基吡啶鎓阳离子作为新型离子液晶和离子导电材料的支撑体:抗衡离子效应分析

Diketonylpyridinium Cations as a Support of New Ionic Liquid Crystals and Ion-Conductive Materials: Analysis of Counter-Ion Effects.

作者信息

Pastor María Jesús, Cuerva Cristián, Campo José A, Schmidt Rainer, Torres María Rosario, Cano Mercedes

机构信息

Departamento Química Inorgánica I, Facultad CC. Químicas, Universidad Complutense, Madrid E-28040, Spain.

Departamento Física Aplicada III, Facultad CC. Físicas, GFMC, Universidad Complutense, Madrid E-28040, Spain.

出版信息

Materials (Basel). 2016 May 12;9(5):360. doi: 10.3390/ma9050360.

Abstract

Ionic liquid crystals (ILCs) allow the combination of the high ionic conductivity of ionic liquids (ILs) with the supramolecular organization of liquid crystals (LCs). ILCs salts were obtained by the assembly of long-chained diketonylpyridinium cations of the type [HOO]⁺ and BF₄, ReO₄, NO₃, CF₃SO₃, CuCl₄ counter-ions. We have studied the thermal behavior of five series of compounds by differential scanning calorimetry (DSC) and hot stage polarized light optical microscopy (POM). All materials show thermotropic mesomorphism as well as crystalline polymorphism. X-ray diffraction of the [HOO][ReO₄] crystal reveals a layered structure with alternating polar and apolar sublayers. The mesophases also exhibit a lamellar arrangement detected by variable temperature powder X-ray diffraction. The CuCl₄ salts exhibit the best LC properties followed by the ReO₄ ones due to low melting temperature and wide range of existence. The conductivity was probed for the mesophases in one species each from the ReO₄, and CuCl₄ families, and for the solid phase in one of the non-mesomorphic Cl salts. The highest ionic conductivity was found for the smectic mesophase of the ReO₄ containing salt, whereas the solid phases of all salts were dominated by electronic contributions. The ionic conductivity may be favored by the mesophase lamellar structure.

摘要

离子液晶(ILCs)能够将离子液体(ILs)的高离子电导率与液晶(LCs)的超分子结构结合起来。ILCs盐是通过组装[HOO]⁺型的长链二酮基吡啶鎓阳离子与BF₄、ReO₄、NO₃、CF₃SO₃、CuCl₄抗衡离子而获得的。我们通过差示扫描量热法(DSC)和热台偏光光学显微镜(POM)研究了五个系列化合物的热行为。所有材料都表现出热致介晶性以及晶体多晶型性。[HOO][ReO₄]晶体的X射线衍射显示出具有交替极性和非极性子层的层状结构

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