Mesomorphism of imidazolium-based fluorinated ionic liquids

Randinu Pulukkody , Yoo Jin Lee , Taylor H. Ware , Emily B. Pentzer
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Abstract

Ionic liquid crystals have received increasing interest due to their positional and/or orientational order as well as the freedom in molecular motions that arise from the formation of mesophases between solid and liquid. While phase changes of non-fluorinated ionic liquids have been widely reported, there have been few reports on the temperature-dependent phase behavior of fluorinated ionic liquids. Here, we present a series of fluorinated ionic liquids with methylimidazolium cations bearing 1H, 1H, 2H, 2H-perfluoroalkyl chains (butyl, hexyl, and octyl) and halide counterions, and demonstrate their thermotropic mesomorphism. These cations were synthesized under solvent-free conditions, and anion exchange was used to vary the halide counterion. The thermal behavior of the compounds was studied using thermogravimetric analysis and differential scanning calorimetry, revealing both liquid crystalline phases and solid-solid phase transitions. We discovered that the mesomorphic properties of the ionic liquids depend strongly on the length of the perfluoroalkyl pendants. Specifically, ionic liquids with a fluorinated butyl chain showed no mesophase behavior while those with hexyl and octyl fluorinated chains displayed liquid crystalline phases at temperatures above 100 °C. The mesophases were further characterized by polarized optical microscopy and powder X-ray diffraction, highlighting the impact of the fluorinated alkyl chain length.

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咪唑基含氟离子液体的介形性
离子液体晶体因其位置和/或取向有序以及在固态和液态之间形成介相所带来的分子运动自由度而受到越来越多的关注。虽然非氟离子液体的相变已被广泛报道,但有关氟离子液体随温度变化的相行为的报道却很少。在此,我们介绍了一系列含甲基咪唑阳离子的氟离子液体,这些阳离子带有 1H、1H、2H、2H-全氟烷基链(丁基、己基和辛基)和卤化物反离子,并展示了它们的热致介形性。这些阳离子是在无溶剂条件下合成的,并通过阴离子交换来改变卤化物反离子。我们使用热重分析和差示扫描量热法研究了这些化合物的热行为,发现了液晶相和固-固相变。我们发现,离子液体的介形态特性在很大程度上取决于全氟烷基链坠的长度。具体来说,含氟丁基链的离子液体不显示介相行为,而含氟己基和辛基链的离子液体在温度高于 100 °C 时显示液晶相。通过偏振光学显微镜和粉末 X 射线衍射对介相进行了进一步表征,突出了氟化烷基链长度的影响。
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