标题: 探讨反置扭转向列型液晶盒之预倾角量测与光电特性
Investigations of Pretilt-Angle Measurements and Electro-Optical Properties of Inverse Twisted Nematic Liquid-Crystal Cell
作者: 林家逸
Lin, Chia-Yi
杨界雄
Yang, Kei-Hsiung
光电系统研究所
关键字: 反置扭转向列型液晶盒;反置扭转向列型模式;反置扭转向列型液晶盒之光电特性;、反置扭转向列型液晶盒预倾角量测;预倾角;摩擦配向;晶体旋转法;光学反跃;反转流动;反应时间;inverse twisted nematic;ITN LC cell;ITN LC mode;electro-optical properties of ITN LC cell;measurements of pretilt angle with ITN LC cell;pretilt angle;rubbing alignment;crystal rotation method;optical bounce;LC backflow;response time
公开日期: 2013
摘要: 本论文主题是量测反置扭转向列型液晶盒(inverse twisted nematic liquid crystal cell)的预倾角参数,并探讨反置扭转向列型液晶盒于不同预倾角参数且有无掺杂旋性分子下的光电特性。反置扭转向列型模式在off-state时液晶分子为垂直排列,但在on-state时其液晶分子导轴则为扭转排列结构。此种类似TN型模式的扭转结构改善了穿透率对于不同波长敏感的问题,也因上下边界液晶分子有光学性的互补,使得有如同VA型模式的杰出暗态表现。且反置扭转向列型液晶盒会因预倾角参数的不同而改变其方向角锚定能(azimuthal anchoring energy) [1],导致不同预倾角参数的液晶盒表现会倾向由双折射效应(ECB mode)或旋光效应(twist mode)来主导 [2]。
论文中使用了一种简单的光学量测方法来测定反置扭转向列型液晶盒的预倾角,其方法是以增广式琼斯矩阵计算其理论再辅以晶体旋转法量测。除此之外,我们也量测了预倾角参数在83°~89°间的反置扭转向列型液晶盒之穿透度-电压特性曲线与穿透度-时间特性曲线。从实验中观察到当施加高电压于液晶盒时,预倾角越低(越远离液晶盒法线)的样品主要是由旋光效应来主导其光电特性,而预倾角越高(越靠近液晶盒法线)的样品则由双折射效应来主导。在动态反应的测量中,则发现当液晶盒由垂直态转为扭转态时会有光学反跃(反转流动)的现象发生,严重地降低了液晶盒的反应速度。而我们在论文中也解释了许多影响光学反跃现象的因素,例如:驱动电压的大小、预倾角参数的高低、有无掺杂旋性分子等等。最后由实验结果发现预倾角为83°且掺杂旋性分子的反置扭转向列型液晶盒,其光学反跃的现象会比较轻微,而有较快的反应速度。
我们相信此量测反置扭转向列型液晶盒之预倾角参数的方法具有相当的可靠度与精确度。且透过量测不同预倾角参数样品的光电特性,让我们理解预倾角对反置扭转向列型液晶盒的影响性,有利于我们未来设计反置扭转向列型液晶盒时,能够挑选出最优化的参数来制作,使得液晶盒有更优异的光学表现。
In this thesis, we have measured the pretilt angles and investigated the electro-optical (E-O) properties of inverse twisted nematic (ITN) liquid crystal (LC) cells with or without chiral dopants. The ITN LC mode has a twisted-homeotropic structure in the quiescent state (off-state) and mixed modes of TN and birefringence in the turn-on state that improve the achromatic characteristic of transmittance-versus-voltage (T-V) curves. With a same pretilt angle below 〖10〗^° from cell normal and under crossed polarizers, the ITN mode has a darker off-state than the tilted-homeotropic mode. As mixed modes of twist and birefringence, the on-state E-O properties of the ITN cell depend on its azimuthal anchoring energy of LC alignments [2]. We can increase the azimuthal anchoring energy of an ITN LC cell by increasing the pretilt angle from cell normal [1].
We have used a simple optical method based on measurements of phase retardation versus out-of-plane cell rotation angle and data analyzed by extended Jones matrix method to obtain pretilt angles of ITN LC cell. In addition, we have also measured the E-O effects by controlling pretilt angles of ITN cells from 1^° to 7^° from cell normal by increasing the rubbing depth between rubbing cloth and LC-aligning polyimide (PI) film. We have found that the LC-director-twist effect of an ITN cell increased with increasing pretilt angle from cell normal, and opposite behavior for the LC-birefringent effect. In transient responses, we have observed that the optical-bounce (LC backflow) effect of the ITN LC cell occurred in transitions from homeotropic-to-twist states under high applied voltages. However, the occurrence of optical bounce slowed down the optical response. In this thesis, we have also studied the influences on the optical-bounce effect from the strength of electric field, the pretilt angle and chiral dopants. Finally, we have found that the ITN LC cell doped with chiral dopants and with a 7^° pretilt angle from cell normal had faster response times.
In this thesis, we have revealed a simple, reliable and accurate method to measure pretilt angles of ITN LC cells. We have also reported the phenomenon that different pretilt angles had a significant impact on E-O properties of the ITN cell. We believe that our works reported here can help LCD engineers to optimize the important parameters of designing ITN LC cells to obtain optimized E-O effects for various display applications.
URI: http://140.113.39.130/cdrfb3/record/nctu/#GT070158030
http://hdl.handle.net/11536/75381
显示于类别:Thesis