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Flexible dimers as dopants for liquid crystal display mixtures with faster relaxation times

机译:柔性二聚体作为液晶显示混合物的掺杂剂,具有更快的弛豫时间

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A series of fluoro-substituted alpha,omega-bis-diphenyloxyalkanes have been investigated as possible dopants for nematic liquid crystal display mixtures to reduce the rotational viscosity and hence response times of the mixtures. The compounds have been prepared using the Williamson synthesis, and the effect of the dopants on the mesophase transition temperature of a suitable Merck display mixture host ( ZLI-4792) has been determined. Measurements of magnetic field-induced relaxation times for director reorientation have been made on the doped and undoped mixtures using a novel electron spin resonance ( ESR) method developed by some of the authors. The relationship between field-induced relaxation times and the rotational viscosity is explained and results are reported for the rotational viscosity of the host material. A brief discussion of the molecular theories of rotational viscosity of nematic liquid crystals identifies the important molecular factors as shape, size, flexibility and orientational order parameter. The influence of the dopant molecules on the orientational order parameter of the doped mixtures has been measured using a static ESR method, and these results enable the separate effects of the dopants on the order parameter of the host and on the rotational dynamics to be identified. Results for field-induced relaxation times and order parameters of doped mixtures are reported for seventeen alpha,omega-bis-fluoro-diphenyloxyalkane dopants. Additionally comparative results are reported for a structurally related compound 1,2-trans-di(4'-propylphenyl) 1',2'- difluoroethane. It is found that particular substitution patterns of fluorine atoms in the phenyl rings of the dopant compounds can result in shorter relaxation times for the nematic display mixture investigated. The use of flexible dimers as dopants provides an additional design aid in the development of nematic mixtures for applications.
机译:已经研究了一系列氟取代的α,ω-双-二苯氧基烷烃作为向列型液晶显示器混合物的可能的掺杂剂,以降低混合物的旋转粘度并因此降低其响应时间。已使用Williamson合成法制备了这些化合物,并确定了掺杂剂对合适的默克展示混合物主体(ZLI-4792)的中间相转变温度的影响。使用某些作者开发的新型电子自旋共振(ESR)方法,对掺杂和未掺杂的混合物进行了磁场诱导的指向矢取向弛豫时间的测量。解释了场致弛豫时间与旋转粘度之间的关系,并报告了基质材料旋转粘度的结果。简要讨论了向列型液晶的旋转粘度分子理论,确定了重要的分子因素,如形状,大小,柔韧性和取向顺序参数。已经使用静态ESR方法测量了掺杂剂分子对掺杂混合物的取向顺序参数的影响,并且这些结果使得能够识别掺杂剂对主体的顺序参数和旋转动力学的单独影响。报告了十七种α,ω-双-氟-二苯氧基烷烃掺杂剂的场致弛豫时间和掺杂混合物的有序参数的结果。此外,还报道了与结构相关的化合物1,2-反式-二(4'-丙基苯基)1',2'-二氟乙烷的比较结果。已经发现,对于所研究的向列显示混合物,掺杂剂化合物的苯环中的氟原子的特定取代模式可以导致更短的弛豫时间。柔性二聚体作为掺杂剂的使用为开发向列型混合物提供了额外的设计帮助。

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