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Molecular Flexibility and Bend in Semi-Rigid Liquid Crystals: Implications for the Heliconical Nematic Ground State

机译:半刚性液晶中的分子柔韧性和弯曲:对幽门念象的影响

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The NTB phase phases possess a local helical structure with a pitch length of a few nanometers and is typically exhibited by materials consisting of two rigid mesogenic units linked by a flexible oligomethylene spacer of odd parity, giving a bent shape. We report the synthesis and characterisation of two novel dimeric liquid crystals, and perform a computational study on 10 cyanobiphenyl dimers with varying linking groups, generating a large library of conformers for each compound; this allows us to present molecular bend angles as probability weighted averages of many conformers, rather than use a single conformer. We validate conformer libraries by comparison of interproton distances with those obtained from solution-based 1D ~1H NOESY NMR, finding good agreement between experiment and computational work. Conversely, we find that using any single conformer fails to reproduce experimental interproton distances. We find the use of a single conformer significantly overestimates the molecular bend angle while also ignoring flexibility; in addition, we show that the average bend angle and flexibility are both linked to the relative stability of the NTB phase.
机译:NTB相相具有局部螺旋结构,具有几纳米的俯仰长度,并且通常通过由奇数奇偶校验的柔性寡核间隔物连接的两种刚性介性单位组成的材料,其具有弯曲的形状。我们报告了两种新型二聚体液晶的合成和表征,并对具有不同连接基团的10氨氰基苯基二聚体进行计算研究,为每种化合物产生大型塑造剂文库;这使我们能够将分子弯曲角度作为许多构象剂的概率加权平均值呈现,而不是使用单个构象。我们通过比较来自基于解决方案的1D〜1H NOESY NMR的差异距离来验证符合子图书馆,在实验和计算工作之间找到良好的一致性。相反,我们发现,使用任何单个符合特者无法重现实验性概况距离。我们发现使用单个符合特器显着高估了分子弯曲角度,同时也忽略了灵活性;此外,我们表明平均弯曲角度和柔韧性均链接到NTB相的相对稳定性。

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