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Development of High-Birefringence Liquid Crystals for Future Optical Materials

机译:用于未来光学材料的高双折射液晶的开发

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High-birefringence liquid crystal materials are used in a wide variety of optical applications such as reflection films and photo storage devices; they are likely to find more applications with increasing research in this area. The design concept is an essential aspect of high-birefringence liquid crystals. We investigated the structure-optical property relationship (liquid crystallinity, refractive index and birefringence) of rod-like mesogens from the viewpoint of physical organic chemistry. We first investigated how the acetylene bond affects nematic transition behavior and refractive index parameters of the conjugated oligoyne or polyyne compounds with two terminal aromatic rings in each single component medium. We synthesized novel, highly birefringent nematic liquid crystal materials: 1,6-diphenyl-1,3,5-hexatriyne derivatives with various alkoxy chains. The derivatives exhibit stable enantiotropic nematic phases. We revealed that a higher number of acetylene units (from 1 to 3), i.e., extended conjugation, led to wider temperature range nematic phases and higher birefringence. The increment in An per acetylene unit was estimated to be 0.14. We then studied the use of heteroatoms with high atomic refraction. Sulfur containing rod-like materials usually have high birefringence values but do not exhibit enantiotropic mesophases because they tend to crystallize or show mesophase instability. We incorporated carboxylic acid end groups into thioether-containing diphenyl-acetylene-based compounds, our hypothesis being that the acid groups would impart mesophase stability through hydrogen-bond driven dimerization. These compounds exhibited highly correlated long-range mesophases and high birefringence compared with their alkyl and alkoxy analogues. We also developed a new and simple process to prepare phenolic-hydroxyl-group substituted diphenyl-acetylene and diphenyldiyne derivatives. Using these molecules, we prepared transparent and colorless high-birefringence polymer films. Our studies show that this review could be a guide for the design of high birefringence liquid crystal materials.
机译:高双折射液晶材料用于各种光学应用,例如反射膜和照片存储装置;他们可能会在该地区的越来越多的研究中找到更多的应用。设计概念是高双折射液晶的必要方面。从物理有机化学的观点来看,我们研究了棒状霉菌的结构 - 光学性质关系(液体结晶度,折射率和双折射)。我们首先研究了乙炔键如何如何影响缀合的寡核苷酸或多膜化合物的向己酮转变行为和折射率参数,在每个单一组分培养基中具有两个末端芳环。我们合成新型,高度双折射型液晶材料:具有各种烷氧基链的1,6-二苯基-1,3,5-六己酰胺衍生物。衍生物表现出稳定的脱蚁液向列阶段。我们透露,乙炔单位(从1至3),即扩展缀合,导致更宽的温度范围向列和更高的双折射。估计每个乙炔单位的增量为0.14。然后我们研究了具有高原子折射的杂原子。含硫状材料的硫通常具有高双折射值,但不表现出对抗嗜酸性的中间蛋白酶,因为它们倾向于结晶或显示中间相稳定性。我们将羧酸端基团掺入含硫醚的二苯基 - 乙炔 - 乙炔基化合物中,我们的假设是酸基团将通过氢键驱动的二聚化赋予中间相稳定性。与其烷基和烷氧基类似物相比,这些化合物表现出高度相关的远程中间蛋白酶和高双折射。我们还开发了一种新的简单方法,制备酚醛 - 羟基取代的二苯基 - 乙炔 - 乙炔和二苯基二炔衍生物。使用这些分子,我们制备了透明和无色的高双折射聚合物薄膜。我们的研究表明,本综述可能是设计高双折射液晶材料的指南。

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