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首页> 外文期刊>Molecular Systems Design & Engineering >Influence of terminal halogen moieties on the phase structure of short-core achiral hockeystick- shaped mesogens: design, synthesis and structure-property relationship
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Influence of terminal halogen moieties on the phase structure of short-core achiral hockeystick- shaped mesogens: design, synthesis and structure-property relationship

机译:终端卤素根的影响阶段短岩心非手性的结构hockeystick -形状mesogens:设计、合成和组织性能的关系

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An extensive study of the effect of terminal halogens on the structure-property relationship in three series of polar short-core hockey-stick-shaped or L-shaped mesogens has been elucidated. The behaviour of the halogens at the tip of the short arm and the role of the end alkyl chain at the long arm in the phase structure of the mesogens have been characterised explicitly. The compounds are shown to exhibit a long-range nematic phase composed of cybotactic clusters (N_(cyb)) along with an underlying orthogonal smectic phase that has a tendency to align in defect-free fashion in the planar cell. Investigations of X-ray diffraction and dielectric spectroscopy confirm the presence of cybotacticity. The measured elastic constants (K_(11) and K_(33)) exhibited the usual behaviour (like bent-core mesogens) in the Iso-N phase; however, a trend reversal was observed towards smectic transition. Temperature-dependent Raman study confirms the formation of intermolecular H-bonding (via -C=O) in the crystalline phase that systematically weakens and is finally disrupted as the system transforms through the smectic to nematic and isotropic phases. Density functional theory (DFT) study reveals the important molecular parameters that correlate with the experimental findings of the self-assembled structures.
机译:一个广泛的研究终端的影响卤素对组织性能的关系在极短岩心三大系列整座或l型mesogens阐明。的短臂和最终的角色烷基链长臂的阶段mesogens结构特征明确。远程cybotactic组成的向列相集群(N_(的地方)还有一个潜在的倾向于正交净化的阶段对齐在没有缺陷时尚平面单元。x射线衍射和调查介电谱证实的存在cybotacticity。(K_(11)和K_(33)表现出通常的行为(如bent-core mesogens) Iso-N阶段;然而,观察趋势逆转净化的过渡。研究证实了分子间的形成H-bonding(通过- c = O)的结晶相最后,系统地削弱和通过中断的系统转换净化的向列和各向同性的阶段。泛函理论(DFT)研究揭示了相关的重要分子参数与实验结果的自组装结构。

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