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介晶二聚体中间隔基手性与宇称的相互作用

The Interplay of Spacer Chirality and Parity in Mesogenic Dimers.

作者信息

Ožegović Antonija, Knežević Anamarija, Novak Jurica, Šegota Suzana, Davidson Patrick, Lesac Andreja

机构信息

Ruđer Bošković Institute, Bijenička 54, 10000, Zagreb, Croatia.

University of Rijeka, Center for Artificial Intelligence and Cyber Security, Radmile Matejčić 2, 51000, Rijeka, Croatia.

出版信息

Chemphyschem. 2024 May 17;25(10):e202400065. doi: 10.1002/cphc.202400065. Epub 2024 Mar 8.

Abstract

Introducing chirality into soft materials, including liquid crystals (LCs), profoundly impacts their self-organization and physical properties. In this study, we synthesized a novel series of LC dimers with a chiral center as part of their flexible spacer. The dimers were prepared in racemic and enantiomerically pure forms. Their spacer length and parity were varied to investigate the effect of spacer chirality and parity on mesomorphic behavior and on chiral induction in the nematic phase of achiral mesogens. Our results show that the even-membered chiral dimers only have chiral nematic phases. In contrast, the odd-membered dimers display rich mesomorphism, including the intriguing blue phase (BP) and chiral form of the twist-bend nematic phase (N*). The observed significant difference in the 3D surface morphology between the racemic and chiral forms of the N* phase suggests that the chiral moiety in the spacer promotes a chiral hierarchy. Furthermore, the chiral dimers show a prominent odd-even effect in the helical twisting power in nematic hosts. These findings highlight the importance of the position of the chiral group within the dimeric molecule and provide new insights into how intrinsic chirality in the spacer affects the overall structural chirality.

摘要

将手性引入包括液晶(LC)在内的软材料中,会对其自组装和物理性质产生深远影响。在本研究中,我们合成了一系列新型的液晶二聚体,其手性中心作为柔性间隔基的一部分。这些二聚体以外消旋体和对映体纯形式制备。改变它们的间隔基长度和奇偶性,以研究间隔基手性和奇偶性对介晶行为以及对非手性介晶元向列相中的手性诱导的影响。我们的结果表明,偶数元手性二聚体仅具有手性向列相。相比之下,奇数元二聚体表现出丰富的介晶现象,包括有趣的蓝相(BP)和扭曲弯曲向列相(N*)的手性形式。在N*相的外消旋体和手性形式之间观察到的3D表面形态的显著差异表明,间隔基中的手性部分促进了手性层次结构。此外,手性二聚体在向列主体中的螺旋扭曲能力上表现出显著的奇偶效应。这些发现突出了手性基团在二聚体分子中位置的重要性,并为间隔基中的固有手性如何影响整体结构手性提供了新的见解。

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