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From Molecules to Materials: Engineering New Ionic Liquid Crystals Through Halogen Bonding

机译:从分子到材料:通过卤素键工程化新型离子液晶

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摘要

Herein, we demonstrate that a bottom-up approach, based on halogen bonding (XB), can be successfully applied for the design of a new type of ionic liquid crystals (ILCs). Taking advantages of the high specificity of XB for haloperfluorocarbons and the ability of anions to act as XB-acceptors, we obtained supramolecular complexes based on 1-alkyl-3-methylimidazolium iodides and iodoperfluorocarbons, overcoming the well-known immiscibility between hydrocarbons (HCs) and perfluorocarbons (PFCs). The high directionality of the XB combined with the fluorophobic effect, allowed us to obtain enantiotropic liquid crystals where a rigid, non-aromatic, XB supramolecular anion acts as mesogenic core.X-ray structure analysis of the complex between 1-ethyl-3-methylimidazolium iodide and iodoperfluorooctane showed the presence of a layered structure, which is a manifestation of the well-known tendency to segregation of perfluoroalkyl chains. This is consistent with the observation of smectic mesophases. Moreover, all the reported complexes melt below 100 °C, and most are mesomorphic even at room temperature, despite that the starting materials were non-mesomorphic in nature.The supramolecular strategy reported here provides new design principles for mesogen design allowing a totally new class of functional materials.
机译:在这里,我们证明了基于卤素键(XB)的自底向上方法可以成功地用于新型离子液晶(ILC)的设计。利用XB对卤代氟化碳的高度特异性和阴离子充当XB受体的能力,我们获得了基于1-烷基-3-甲基咪唑碘化物和碘代氟化碳的超分子络合物,克服了碳氢化合物(HCs)之间的不溶混性和全氟化碳(PFC)。 XB的高方向性与疏水效应相结合,使我们能够获得对映液晶,其中刚性,非芳族XB超分子阴离子充当介晶核.1-乙基-3-间配合物的X射线结构分析碘化甲基咪唑鎓和碘全氟辛烷显示出层状结构,这是众所周知的全氟烷基链分离趋势的体现。这与近晶中间相的观察一致。此外,尽管起始原料本质上是非同晶的,但所有报道的复合物在低于100°C的温度下熔化,即使在室温下也大多数是同晶的。此处报道的超分子策略为介晶设计提供了新的设计原理,从而实现了全新的类功能材料。

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