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A Twist-Bend Nematic Phase Driven by Hydrogen Bonding

机译:氢键驱动的扭曲弯曲向列相

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摘要

The liquid crystalline phase behavior of 4-[6-(4-cyanobiphenyl-4-yl)hexyloxy]benzoic acid (CB6OBA) and 4-[5-(4-cyanobiphenyl-4-yloxy)pentyloxy]benzoic acid (CBO5OBA) is described. Both acids show an enantiotropic nematic phase attributed to the formation of supramolecular complexes by hydrogen bonding between the benzoic acid units. In addition, CB6OBA provides the first example of hydrogen bonding driving the formation of the twist-bend nematic phase. The observation of the twist-bend nematic phase for CB6OBA, but not CBO5OBA, is attributed to the more bent molecular shape of the complexes formed by the former, reinforcing the view that shape is a key factor in stabilizing this new phase. Temperature-dependent FTIR spectroscopy reveals differences in hydrogen bonding between the two nematic phases shown by CB6OBA which suggest that the open hydrogen-bonded complexes may play an important role in stabilizing the helical arrangement found in the twist-bend nematic phase.
机译:4- [6-(4-氰基联苯-4-基)己氧基氧基]苯甲酸(CB6OBA)和4- [5-(4-氰基联苯-4-基氧基)戊氧基]苯甲酸(CBO5OBA)的液晶相行为为描述。两种酸均显示对映向列相,这归因于通过苯甲酸单元之间的氢键形成超分子络合物。另外,CB60BA提供了氢键驱动扭曲弯向列相形成的第一个例子。对CB60A而不是CBO50A的扭曲-弯曲向列相的观察归因于由前者形成的复合物的更弯曲的分子形状,从而强化了一种观点,即形状是稳定该新相的关键因素。温度相关的FTIR光谱揭示了CB60AB显示的两个向列相之间氢键的差异,这表明开放的氢键复合物可能在稳定扭曲弯曲向列相中的螺旋排列中起重要作用。

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