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首页> 外文期刊>SID International Symposium: Digest of Technology Papers >Improvement of Optical Compensated Bend (OCB) and Vertical Alignment (VA) Mode Liquid Crystal Displays by Nano-alignment Technique
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Improvement of Optical Compensated Bend (OCB) and Vertical Alignment (VA) Mode Liquid Crystal Displays by Nano-alignment Technique

机译:通过纳米取向技术改进光学补偿弯曲(OCB)和垂直取向(VA)模式的液晶显示器

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摘要

Surface-modified silicon oxide (SiO{sub}2) nanoparticles containing surfactants with amino end-groups were synthesized. The amounts of surfactants anchoring on SiO{sub}2 nanoparticles were characterized to research 8 wt% by thermogravimetric analysis (TGA). The characteristic amino peak of surfactants on SiO{sub}2 nanoparticles can also be confirmed by nuclear magnetic resonance (NMR) spectroscopy. By spin-coating reactive surface-modified SiO{sub}2 nanoparticies on the pre-cured polyimide (PI), amino end-groups of the surfactants can be further reacted with pre-cured PI layer over the ITO surface by thermo-curing. Moreover, the distribution of post-cured nanoparticles in the optical compensated bend (OCB) and vertical alignment (VA) cells have been investigated by scanning electron microscope (SEM). As a result, the newly developed nano-alignment technique with different process conditions, such as various particle sizes and concentrations, can be applied to improve the threshold voltage, response time, and pre-tilt angle in the OCB and VA mode liquid crystal display (LCD) cells.
机译:合成了包含具有氨基端基的表面活性剂的表面改性的氧化硅(SiO {sub} 2)纳米粒子。通过热重分析(TGA)表征锚定在SiO {sub} 2纳米颗粒上的表面活性剂的量以研究8重量%。 SiO {sub} 2纳米粒子上表面活性剂的特征氨基峰也可以通过核磁共振(NMR)光谱确认。通过在预固化的聚酰亚胺(PI)上旋涂反应性表面改性的SiO {sub} 2纳米粒子,表面活性剂的氨基端基可以通过热固化与ITO表面上的预固化的PI层进一步反应。此外,已经通过扫描电子显微镜(SEM)研究了后固化的纳米颗粒在光学补偿弯曲(OCB)和垂直取向(VA)单元中的分布。结果,可以应用具有不同工艺条件(例如各种粒径和浓度)的新开发的纳米取向技术来改善OCB和VA模式液晶显示器中的阈值电压,响应时间和预倾斜角。 (LCD)单元。

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