Hahm Suk Gyu, Lee Seung Woo, Lee Taek Joon, Cho Seon Ah, Chae Boknam, Jung Young Mee, Kim Seung Bin, Ree Moonhor
Department of Chemistry, National Research Lab for Polymer Synthesis & Physics, Laboratory for Vibrational Spectroscopy, Pohang University of Science and Technology, Pohang 790-784, Republic of Korea,
J Phys Chem B. 2008 Apr 24;112(16):4900-12. doi: 10.1021/jp7101868. Epub 2008 Apr 3.
A novel photosensitive polyimide, poly(4,4'-stilbenylene 4,4'-oxidiphthalimide) (ODPA-Stilbene PSPI) was newly synthesized. The most surprising feature of this PSPI is that the PSPI films irradiated with linear polarized ultraviolet light (LPUVL) can favorably induce a unidirectional alignment of liquid crystals (LCs) in contact with the film surface and further switch the director of the unidirectionally aligned LCs from a perpendicular direction to a parallel direction with respect to the polarization direction of LPUVL by simply controlling the exposure dose in the irradiation process. These LPUVL-irradiated films were found to provide high anchoring energy to LCs, always giving very stable, homogeneous cells with unidirectionally aligned LCs regardless of the LC alignment directions. In the films, the PSPI polymer chains were found to undergo favorably unidirectional orientation via a specific orientation sequence of the polymer chain segments led by the directionally selective trans-cis photoisomerization of the stilbene chromophore units in the backbone induced by LPUVL exposure. Such unidirectionally oriented polymer chains of the films induce alignment of the LCs along the orientation direction of the polymer chains via favorable anisotropic molecular interactions between the oriented polymer chain segments and the LC molecules. In addition, the PSPI has an excellent film formation processibility; good quality PSPI thin films with a smooth surface are easily produced by simple spin-coating of the soluble poly(amic acid) precursor and subsequent thermal imidization process. In summary, this new PSPI is the promising LC alignment layer candidate with rubbing-free processing for the production of advanced LC display devices, including LC display televisions with large display areas.
一种新型的光敏聚酰亚胺,聚(4,4'-亚苯撑 4,4'-氧化邻苯二甲酰亚胺)(ODPA-芪基聚酰亚胺)被新合成出来。这种聚酰亚胺最令人惊讶的特性是,用线偏振紫外光(LPUVL)照射的聚酰亚胺薄膜能够顺利地诱导与薄膜表面接触的液晶(LCs)单向排列,并且通过在照射过程中简单地控制曝光剂量,能够进一步将单向排列的液晶的指向矢从相对于 LPUVL 偏振方向的垂直方向切换到平行方向。发现这些经 LPUVL 照射的薄膜为液晶提供了高锚定能,无论液晶的排列方向如何,总能产生具有单向排列液晶的非常稳定、均匀的液晶盒。在这些薄膜中,发现聚酰亚胺聚合物链通过由 LPUVL 曝光诱导的主链中芪发色团单元的定向选择性反式-顺式光异构化导致的聚合物链段的特定取向序列,顺利地进行单向取向。这种薄膜的单向取向聚合物链通过取向的聚合物链段与液晶分子之间良好的各向异性分子相互作用,诱导液晶沿聚合物链的取向方向排列。此外,该聚酰亚胺具有优异的成膜加工性能;通过简单地旋涂可溶性聚酰胺酸前体并随后进行热亚胺化过程,很容易制备出表面光滑的高质量聚酰亚胺薄膜。总之,这种新型聚酰亚胺是用于生产先进液晶显示器件(包括大显示面积液晶显示电视)的无摩擦加工的有前途的液晶取向层候选材料。