刘发顺, 崔晓鹏, 赵东宇, 许丽红, 刘斌, 毕伟华. 掺杂Cu2O 纳米粒子的近晶相液晶显示器件的电-光特性[J]. 华南师范大学学报(自然科学版), 2017, 49(1): 35-39. doi: 10.6054/j.jscnun.2017055
引用本文: 刘发顺, 崔晓鹏, 赵东宇, 许丽红, 刘斌, 毕伟华. 掺杂Cu2O 纳米粒子的近晶相液晶显示器件的电-光特性[J]. 华南师范大学学报(自然科学版), 2017, 49(1): 35-39. doi: 10.6054/j.jscnun.2017055
LIU F S, CUI X P, ZHAO D Y, XU L H, LIU B, BI W H. Electro-optical Properties of Smectic Liquid Crystal Display doped with Cu2O Nanoparticles[J]. Journal of South China Normal University (Natural Science Edition), 2017, 49(1): 35-39. doi: 10.6054/j.jscnun.2017055
Citation: LIU F S, CUI X P, ZHAO D Y, XU L H, LIU B, BI W H. Electro-optical Properties of Smectic Liquid Crystal Display doped with Cu2O Nanoparticles[J]. Journal of South China Normal University (Natural Science Edition), 2017, 49(1): 35-39. doi: 10.6054/j.jscnun.2017055

掺杂Cu2O 纳米粒子的近晶相液晶显示器件的电-光特性

Electro-optical Properties of Smectic Liquid Crystal Display doped with Cu2O Nanoparticles

  • 摘要: 驱动电压的大小是液晶显示器件的重要指标,关系到产品的制造成本、能耗和安全性及实用性. 近年来,为了使液晶显示器件达到驱动电压更低、响应更快、色彩更鲜明、画质更好、更节能等要求,研究者将目光转向液晶/纳米复合技术.纳米粒子与液晶复合,在不破坏液晶原有结构的同时,将纳米材料的自身特性融入到液晶中,从而有效改善液晶的特性.研究发现,半导体纳米粒子在外加电场作用下能够产生极化电场,且无极化疲劳现象,可以有效改善液晶电光性能.本课题组选用Cu2O半导体纳米粒子作为掺杂剂掺杂于近晶相液晶8CB中,研究其对液晶电-光性能的影响.研究发现,Cu2O纳米粒子表面的正电荷能够增强其与液晶分子间的偶极作用,产生的局域电场加速了液晶分子的转动,降低了阈值电压,极大地改善了近晶相液晶的电光性能.

     

    Abstract: The size of the driving voltage is seen as a important index to choose the liquid crystal display device, it is related to the manufacturing costs, energy consumption, safety and practicality. At present, to meet a series of requirements of liquid crystal display such as lower driving voltage, faster response, more vivid color, better picture, saving energy and better animation, the researchers are focusing more on the liquid crystal / nanomaterial composites. When nanomaterials were doped into liquid crystals, it would be not only destroy the original structure of the liquid crystal, but also integrate its own unique properties into the liquid crystal, thereby improving the performance of liquid crystal. It was found that the semiconducting nanomaterials could produce the polarization electric field without polarization fatigue under electric field, leading to the enhancement of the electric-optical properties of liquid crystals. In our study, Cu2O semiconductor nanoparticles were added into a semctic liquid crystal, 8CB, and the effect on electric-optical properties of liquid crystal was studied. Cu2O nanoparticles have a large positive charge, which enhancing the interaction with the liquid crystal. And the electric field of the liquid crystal molecules around nanoparticles would speed the switching of molecular of liquid crystals, leading to a reduce of the threshold voltages of liquid crystal and further improving the electric-optical properties of liquid crystal.

     

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