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An infrared technique for the alignment control of highly viscous mesophases: The formation of homeotropic and planar domains for hexagonal columnar mesophase of Triphenylene mesogens

机译:红外技术,用于高粘度中间相的取向控制:三亚苯基介晶的六方柱状中间相的垂直和平面畴的形成

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A new phenomenon was found for the alignment change of hexagonal columnar (Col_h) mesophase of a typical discotic liquid crystal of triphenylene derivatives, which is caused by a polarizing infrared laser irradiation with a wavelength to excite the vibrational mode of the selected chemical bond in the mesogen. A series of experiments has revealed that the polarization direction of incident laser is correlated to the molecular alignment generated by the irradiation, where the molecules are reoriented in a way that the molecules no longer absorb the incidence. The resultant new domain has a certain level of uniformity for the alignment from an optical point of view and remains for several hours to minutes depending on the temperature against the isotoropization. The manual scanning of the beam successfully gives uniform domains with a shape and one can generate a character "H", for example, with lath-like shaped uniform domains in the mesophase film. It was found that such new domains could be freezed into the polymer film by photopolymerization when the mesogens have polymerizable groups in the molecular flamework. This strongly indicate that the combination of the infrared control of the molecular alignment of Col_h mesophase and the following photopolymerization could realize highly functional polymer films where the structured domains with a variety of shapes and alignments are assembled in the film. Recently, it was also demonstrated that a homeotropic domain could be generated using a circularly polarized incidence at 6.18 μm which corresponds to the wavelength to excite the aromatic C-C stretching band, being coincident with the relation of the alignment to the polarization direction of incidence.
机译:发现了一种新的现象,该现象是典型的三亚苯基衍生物盘状液晶的六方柱状(Col_h)中间相的取向变化的缘故,这是由于偏振红外激光辐射的波长激发了所选化学键的振动模式而引起的。介晶一系列实验表明,入射激光的偏振方向与辐照产生的分子排列相关,其中分子以分子不再吸收入射的方式重新定向。从光学的观点来看,所得的新畴对于对准具有一定程度的均匀性,并且取决于抵抗同种异化的温度,其保持数小时至数分钟。光束的手动扫描成功地给出了具有一定形状的均匀区域,并且可以产生字符“ H”,例如,在中间相膜中具有板条状的均匀区域。发现当介元在分子焰中具有可聚合基团时,可以通过光聚合将这种新的区域冻结在聚合物膜中。这有力地表明,对Col_h中间相的分子排列进行红外控制和随后的光致聚合的结合可以实现高功能聚合物膜,其中具有各种形状和排列的结构化畴被组装在膜中。近来,还证明了使用6.18μm的圆偏振入射可以产生垂直域,该圆偏振入射对应于激发芳族C-C拉伸带的波长,这与取向与入射的偏振方向的关系一致。

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