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二维六方氮化硼纳米片作为基于液晶的电光器件中的平面取向剂。

Two-dimensional hexagonal boron nitride nanosheet as the planar-alignment agent in a liquid crystal-based electro-optic device.

作者信息

Basu Rajratan, Atwood Lukas J

出版信息

Opt Express. 2019 Jan 7;27(1):282-292. doi: 10.1364/OE.27.000282.

DOI:10.1364/OE.27.000282
PMID:30645374
Abstract

The planar-alignment agent in an electro-optic liquid crystal (LC) device plays an essential role for the LC's electro-optical characteristics. Rubbed polyimide (PI) layers are conventionally used as the planar-alignment agent in traditional liquid crystal displays (LCDs). Here we experimentally demonstrate that the 2D hexagonal boron nitride (h-BN) nanosheet can serve as the planar-alignment agent in an LC cell. This h-BN has higher chemical stability and more optical transparency than the PI layer. Two h-BN-covered indium tin oxide (ITO) glass slides (without any conventional PI layers) are placed together to fabricate an LC cell. A nematic LC inside this h-BN-based cell exhibits uniform planar-alignment-which is probed by a crossed polarized optical microscope. This planar-alignment at the molecular scale is achieved due to the coherent overlay of the benzene rings of the LC molecules on the hexagonal BN lattice. This h-BN-based LC cell shows the typical electro-optical effect when an electric field is applied via ITO electrodes. The dielectric measurement across this h-BN-based electro-optic cell shows a standard Fréedericksz transition of the LC, confirming that the 2D h-BN, as the planar-alignment agent, supplies adequate anchoring energy-which can be overcome by the Fréedericksz threshold voltage. Finally, we show that the h-BN-based LC cell exhibits more optical transparency than a regular PI alignment layer-based LC cell.

摘要

在电光液晶(LC)器件中,平面取向剂对液晶的电光特性起着至关重要的作用。在传统液晶显示器(LCD)中,通常使用摩擦聚酰亚胺(PI)层作为平面取向剂。在此,我们通过实验证明二维六方氮化硼(h-BN)纳米片可作为液晶盒中的平面取向剂。这种h-BN比PI层具有更高的化学稳定性和更高的光学透明度。将两片覆盖有h-BN的氧化铟锡(ITO)玻璃片(无任何传统PI层)放置在一起制成一个液晶盒。该基于h-BN的液晶盒内的向列型液晶呈现均匀的平面取向,这通过交叉偏振光学显微镜进行探测。这种分子尺度的平面取向是由于液晶分子的苯环与六方氮化硼晶格的相干叠加而实现的。当通过ITO电极施加电场时,该基于h-BN的液晶盒表现出典型的电光效应。对该基于h-BN的电光盒进行的介电测量显示出液晶的标准弗雷德里克兹转变,证实二维h-BN作为平面取向剂提供了足够的锚定能量,该能量可被弗雷德里克兹阈值电压克服。最后,我们表明基于h-BN的液晶盒比基于常规PI取向层的液晶盒具有更高的光学透明度。

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