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Phase behaviors of colloidal analogs of bent-core liquid crystals

机译:弯曲核液晶的胶体类似物的相行为

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摘要

Bent-core liquid crystal (LC) molecules are known to form mesophases with fascinating polar order and supramolecular chirality despite the achiral nature of the mesogens. The assembly of colloidal particles with geometrical similarity to bent-core molecular mesogens not only provides new insights into the physical behaviors of atoms or molecules but also leads to new materials with broad applications. Despite tremendous progress in colloidal synthesis and assembly, there has been a lack of colloidal model systems of bent-core molecular mesogens for LC property discovery and application development. This article describes a systematic study on the phase behaviors of colloidal analogs of bent-core LC mesogens in both experiments and simulations. We demonstrated that bent rods with controlled bending angle (α) and aspect ratio (L/D, with L and D as the length and diameter of each rod arm, respectively) can spontaneously assemble into several typical banana phases including smectic A, smectic C, synclinic tilted antiferroelectric-like smectic, and twist smectic phases, resembling bent-core LC molecules. The formation and transition of these phases were found to be strongly dependent on the geometric parameters of rods. Phase diagrams were developed to illustrate the existence and stability range of all the LC phases in α and L/D space. This work opens the door to the development of novel complex types of molecular or colloidal self-organization and new functional materials with electro-optical or nonlinear optical properties.
机译:尽管液晶元具有非手性,但已知弯曲核液晶(LC)分子会形成具有令人着迷的极性顺序和超分子手性的中间相。与弯曲核分子介晶具有几何相似性的胶体粒子的组装,不仅为原子或分子的物理行为提供了新的见识,而且还导致了具有广泛应用的新材料。尽管在胶体合成和组装方面取得了巨大进展,但仍缺乏用于LC特性发现和应用开发的弯曲核分子液晶元的胶体模型系统。本文介绍了在实验和模拟中对弯曲核LC液晶元胶体类似物的相行为的系统研究。我们证明了具有可控弯曲角度(α)和长宽比(L / D,其中L和D分别为每个杆臂的长度和直径)的弯曲杆可以自发组装为几个典型的香蕉相,包括近晶A,近晶C ,类似斜向的反铁电状近晶相和扭曲近晶相,类似于弯曲核LC分子。发现这些相的形成和过渡强烈依赖于棒的几何参数。开发了相图以说明在α和L / D空间中所有LC相的存在和稳定性范围。这项工作为开发新型复杂类型的分子或胶体自组织以及具有电光或非线性光学特性的新型功能材料打开了大门。

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