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CIS-ZnS quantum dots for self-aligned liquid crystal molecules with superior electro-optic properties

机译:具有优质液晶分子的顺式Zns量子点具有上级电流特性

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摘要

We demonstrate self-aligned and high-performance liquid crystal (LC) systems doped with 1-dimensional (1D) chain-like clusters of CulnS2 (ClS)-ZnS core-shell quantum dots (QDs). By changing the cell fabrication method of the LC-QD composites, we can selectively control the orientation of the LC molecules between the homogeneous and homeotropic states without conventional LC alignment layers. The homeotropic alignment of LCs was achieved by random dropcasting and the homogeneous alignment was performed using a capillary injection of LC-QDs due to the random or linear diffusion of QD clusters into ITO defects. The electrically compensated bend (ECB)- and vertically aligned (VA) mode LC displays (LCDs) containing our LC-QD composite both showed superior electro-optic (EO) properties. A 37.1% reduction in the threshold voltage (V_(th)) and a 36.6% decrease in the response time were observed for ECB mode LCDs, and a 47.0% reduction in the V_(th) and a 38.3% decrease in the response time were observed for VA mode LCDs, meaning that the proposed LC-QD composites have a great potential for the production of advanced flexible LCDs.
机译:我们展示了与CULNS2(CLS)-ZNS CORE-SHELL量子点(QDS)的1维(1D)链样簇掺杂的自我对齐和高性能液晶(LC)系统。通过更改LC-QD复合材料的细胞制造方法,我们可以选择性地控制同质和同型态在没有常规LC对齐层的同质和同型态之间的LC分子的方向。 LCS的同型对齐是通过随机滚落来实现的,并且由于QD簇的随机或线性扩散到ITO缺陷中,使用LC-QD的毛细管注射LC-QD进行了同质比对。电气补偿的弯曲(ECB)和垂直排列(VA)模式LC显示器(LCD)包含我们的LC-QD复合材料都显示出优质的电磁(EO)特性。观察到欧洲央行模式LCD的阈值电压(v_(th))降低了37.1%,响应时间下降了36.6%,V_(Th)降低了47.0%,响应时间降低了38.3%在VA模式LCD中观察到,这意味着所提出的LC-QD复合材料具有产生高级柔性LCD的巨大潜力。

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