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通过改变液晶聚合物刷的密度来工程化向列相液晶在固体表面上的锚定行为。

Engineering the anchoring behavior of nematic liquid crystals on a solid surface by varying the density of liquid crystalline polymer brushes.

机构信息

Institute for Molecular Engineering, University of Chicago, Chicago, USA.

出版信息

Soft Matter. 2018 Sep 26;14(37):7569-7577. doi: 10.1039/c8sm00991k.

DOI:10.1039/c8sm00991k
PMID:30065982
Abstract

Controlling the orientation of liquid crystal (LC) molecules towards contacting surfaces is a crucial requirement for the development of LC displays and passive electro-optical devices. Up to now, research has been focused on photo-responses of a LC azobenzene polymer system to obtain either planar or homeotropic orientation of LCs. It remains a challenge, however, to tune the polar angle of LC molecules on the solid surface and gain more insights about the polymer chain conformation extending in LC medium. Here, we deposit a liquid crystalline side chain polymer brush, poly(6-(4-methoxy-azobenzene-4'-oxy)hexyl methacrylate) (PMMAZO), onto the solid surface with film thickness varying between ∼3 nm and 13 nm; therefore, the grafting density of the brush layer ranges from 0.0219 to 0.0924 chains per nm2. When LCs are confined in hybrid cells with a top surface eliciting uniform homeotropic anchoring and a bottom surface covered by the PMMAZO brush, the out-of-plane polar angle of 4-pentyl-4'-cyanobiphenyl (5CB) on the brush layer gradually changes from ∼0° to ∼62° by simply increasing the grafting brush density. The surface forces apparatus (SFA) measurement is used to determine 5CB as a good solvent for the PMMAZO brush and understand the relationship between the chain conformation in 5CB and the anchoring behavior of LC molecules on the polymer brush layer. For high grafting density, the polymer chain in 5CB extends significantly away from the substrate, making the side chain mesogens on average almost parallel to the substrate; for the low-density case, the main chain extends in the narrow region around the surface for aligning the mesogens perpendicular to the substrate.

摘要

控制向接触表面的液晶(LC)分子的取向是开发 LC 显示器和无源电光器件的关键要求。到目前为止,研究一直集中在 LC 偶氮苯聚合物系统的光响应上,以获得 LC 的平面或各向同性取向。然而,仍然存在一个挑战,即调整固体表面上 LC 分子的极角,并更深入地了解在 LC 介质中延伸的聚合物链构象。在这里,我们将具有厚度在约 3nm 至 13nm 之间的液晶侧链聚合物刷,聚(6-(4-甲氧基-偶氮苯-4'-氧基)己基甲基丙烯酸酯)(PMMAZO),沉积到固体表面上;因此,刷层的接枝密度范围为 0.0219 至 0.0924 个链/ nm2。当 LC 被限制在具有上表面引发均匀的各向同性锚定并且下表面被 PMMAZO 刷覆盖的混合单元中时,4-戊基-4'-氰基联苯(5CB)在刷层上的离面极角逐渐从约 0°变为约 62°,只需简单地增加接枝刷密度即可。表面力仪(SFA)测量用于确定 5CB 是 PMMAZO 刷的良溶剂,并理解 5CB 中链构象与 LC 分子在聚合物刷层上的锚定行为之间的关系。对于高接枝密度,聚合物链在 5CB 中显著远离基底,使得侧链介晶大体上几乎与基底平行;对于低密度情况,主链在表面附近的狭窄区域中延伸,以使介晶垂直于基底排列。

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