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Surface modification of polyimide alignment films by ion beams for liquid crystal displays

机译:液晶显示器用离子束对聚酰亚胺取向膜进行表面改性

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摘要

The optically-compensated-bend mode exhibits fast response by switching between two bend states for liquid crystal displays (LCD). However, the initial liquid crystal configuration is in a splay state. It is required to apply a voltage higher than the critical voltage to transit the cells from the splay state to the bend state. The transfer process takes a period of time to stabilize the bend state before the efficient operation could be started, and thus it is termed the warm-up time or transition time. In this study, the surface of polyimide alignment films was modified by ion beams to promote the transition. A large number of nucleation sites were demonstrated to reduce the transition time from 24s to 17s after the effective surface modification by Ar~+ ion beam. Both H_2 gas and Ar gas were employed as the ion sources at the different 165-250eV energy levels. The surface characteristic analysis results also showed that the room temperature contact angle with water was reduced from 90.1° to 81.7°. In the meanwhile, there was no obvious morphological destruction on the polyimide film surface, which was evidenced by the atomic force microscopy study. In addition, the LCD cells remained an excellent response time of 3.4ms at 5.5V.
机译:通过在液晶显示器(LCD)的两个弯曲状态之间切换,光学补偿弯曲模式显示出快速响应。然而,初始液晶构造处于张开状态。需要施加高于临界电压的电压以将电池从张开状态转变为弯曲状态。在开始有效操作之前,转印过程需要一段时间来稳定弯曲状态,因此被称为预热时间或过渡时间。在这项研究中,聚酰亚胺取向膜的表面被离子束改性以促进过渡。大量的成核位置被证明可以在Ar〜+离子束进行有效的表面改性后将过渡时间从24s减少到17s。在不同的165-250eV能级下,H_2气体和Ar气体均用作离子源。表面特性分析结果还表明,室温下与水的接触角从90.1°减小到81.7°。同时,通过原子力显微镜研究证明,聚酰亚胺膜表面没有明显的形态破坏。此外,LCD单元在5.5V时仍具有3.4ms的出色响应时间。

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