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Microstructure-Stabilized Blue Phase Liquid Crystals

机译:微结构稳定的蓝相液晶

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摘要

We show that micron-scale two-dimensional (2D) honeycomb microwells can significantly improve the stability of blue phase liquid crystals (BPLCs). Polymeric microwells made by direct laser writing improve various features of the blue phase (BP) including a dramatic extension of stable temperature range and a large increase both in reflectivity and thermal stability of the reflective peak wavelength. These results are mainly attributed to the omnidirectional anchoring of the isotropically oriented BP molecules at the polymer walls of the hexagonal microwells and at the top and bottom substrates. This leads to an omnidirectional stabilization of the entire BPLC system. This study not only provides a novel insight into the mechanism for the BP formation in the 2D microwell but also points to an improved route to stabilize BP using 2D microwell arrays.
机译:我们显示微米级的二维(2D)蜂窝状微孔可以显着提高蓝相液晶(BPLC)的稳定性。通过直接激光写入制备的聚合物微孔改善了蓝相(BP)的各种功能,包括稳定温度范围的显着扩展以及反射峰波长的反射率和热稳定性的大幅提高。这些结果主要归因于各向同性定向的BP分子在六角形微孔的聚合物壁以及顶部和底部基底上的全向锚固。这导致整个BPLC系统的全方位稳定。这项研究不仅为2D微孔中BP的形成机理提供了新颖的见解,而且还指出了使用2D微孔阵列稳定BP的改进途径。

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