标题: | 可溶性聚醯亚胺之合成及其在液晶配向膜上的应用 Synthesis of Soluble Polyimides for the Applications of Liquid Crystal Alignment Layers |
作者: | 李文钦 Wen-Chin Lee 许千树 Dr. Chain-Shu Hsu 应用化学系硕博士班 |
关键字: | 可溶性;聚醯亚胺;液晶;配向膜;桂皮酸酯;光配向;不需摩擦;Soluble;Polyimide;Liquid Crystal;Alignment Layer;Cinnamate;Photoalignment;Nonrubbing |
公开日期: | 2000 |
摘要: | 本论文主要分为二个部份,第一部份为含长碳链侧链之可溶性聚醯亚胺的合成及其在液晶配向膜上的应用,第二部份为含桂皮酸酯基侧链之可溶性聚醯亚胺的合成及其在光诱导液晶配向膜上的应用。 本研究第一部份的目的是利用二步合成法合成出含18个烷基长碳链侧链的可溶性聚醯亚胺,并探讨其在液晶配向膜上的应用性。为了探讨主链结构的改变对含长碳链侧链之聚醯亚胺的溶解性、玻璃转移温度、热安定性质以及液晶配向性质的影响,本研究选择三个双酸酐单体以及四个双胺单体以共聚合的方法改变主链结构合成出三个系列的共聚醯亚胺。大部分的共聚醯亚胺可溶解在极性溶剂中,所合成9种可溶性共聚醯亚胺薄膜在定向摩擦后,都可以均匀地排列液晶分子。尽管各共聚醯亚胺都含相同比例的长碳链侧链,所测得的预倾角值却分布很广,最低至0.16°,最高到15.54°。实验结果发现,主链立体结构和主链与液晶分子间的偶极作用力是影响液晶预倾角最主要的关键。本研究所得的结论是,线性的、对称的、刚硬的以及偶极值较小的聚醯亚胺主链,在导入长碳链侧链之后会有较高的机会得到高预倾角。 本研究第二部份的目的是合成出含桂皮酸酯基侧链之可溶性聚醯亚胺,并探讨其在液晶光诱导配向膜上的应用性。实验结果显示,藉由导入桂皮酸酯基侧链所合成的感光性聚醯亚胺高分子(PICA),经由低能量线性偏极化紫外光(LPUV)照射下,具有排列液晶分子的能力。光诱导液晶分子排列方向垂直于LPUV偏极化方向,且液晶配向的均匀性在85℃ 450小时长时间测试都没有丝毫变差。此外,利用增加侧链感光基密度或是掺混光增感剂的方式提高光诱导配向的感光度的目的并没有实现,增加(2+2) photo-dimerization的反应速率反而导致PICA薄膜的光诱导配向能力变差。利用分子模拟计算,本研究成功地描述PICA薄膜的光诱导配向机制。实验中发现,透过适当涂布溶剂的选择,可以提高PICA配向膜的光诱导配向性质与缩短曝光能量。利用二次曝光法可以在PICA配向膜上产生小预倾角,透过材料改质(PICA-co-PIC18)与照光制程(single NPUV exposure)方法,虽然可以使感光性聚醯亚胺的预倾角有所提升,然而这些方法都会使光诱导配向性质变差。由于PICA具有高溶解性,优异的热稳定性质,且不必摩擦定向,是良好的IPS型液晶显示器低温制程配向材料。 Synthesis of alkyl-branched and solvent-soluble copolyimides (coPIs) and their applications on liquid crystal (LC) alignment layers were described in the first part of this thesis. Synthesis of cinnamate-based and solvent-soluble polyimides (PIs) and their applications on LC photoalignment layers were described in the second part of this thesis. In the first part of this thesis, three series of coPIs containing long alkyl branches were synthesized using the two-step method via poly(amic acid) precursors and chemical imidization. Their applications as LC alignment layers were evaluated, and correlation between coPI backbone structures and LC pretilt angles were discussed. Three dianhydrides and four diamines were used to modify the main chain structures of coPIs. Most of the coPIs prepared are soluble in polar organic solvents. Good liquid crystal alignment was achieved by buffing the spin-coated coPI films on the indium-tin-oxide glass substrates. The LC pretilt angles vary wildly from 0.16 to 15.54 degrees even though the coPIs are branched with the same amount of alkyl group. It was found that both main chain structures and dipole interactions play key roles in determining the pretilt angle. The main chain coPIs with long alkyl side chain, small dipole, linear, symmetric and rigid core structures are favorable for generating large LC pretilt angles. In the second part of this thesis, a new photo-crosslinkable and solvent-soluble polyimide containing cinnamate side chains (PICA) was developed for aligning nematic liquid crystals (LCs). Good LC alignment was achieved by exposing a long-wave linearly polarized ultraviolet (LPUV) light to the PICA film. The LC alignment direction is found perpendicular to the polarization axis of the incident LPUV light. The uniform alignment of LC molecules induced by PICA films remains intact after being heated at 85°C for 450 hours. Two methods were developed for enhancing the photosensitivity of PICA. One is to increase the content of cinnamate side chain in PICA main chain (synthesis of PICA2) and another is to blend some photosensitizer into PICA films. Our experimental results show that increasing the rate of photo-dimerization decreases the alignment ability of the PICA films. Using the molecular simulation method, we successfully describe the photoalignment mechanism of the PICA films. It is also found that photo-induced LC alignment ability of the PICA film could be enhanced through choosing a proper coating solvent. A small pretilt angle on the PICA film was generated by the double exposure method. The pretilt angle on the PICA film could be enhanced by introducing long alkyl side chains to PI main chain (synthesis of PICA-co-PIC18) or by nonpolarized UV single exposure method. However, these two methods also led poor photoalignment ability. The PICA films exhibit good solubility in several polar solvents, low curing temperature and excellent thermally stability while eliminating charge trapping centers. Useful applications for the in-plane switching and low temperature poly-silicon TFT-LCDs are foreseeable. |
URI: | http://140.113.39.130/cdrfb3/record/nctu/#NT890500058 http://hdl.handle.net/11536/67678 |
显示于类别: | Thesis |