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A Combined Study of Mesomorphism, Optical and Electronic Properties of Novel Columnar Liquid Crystals.

机译:新型柱状液晶的同构,光学和电子性质的综合研究。

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摘要

Columnar mesophases of discotic liquid crystals (DLCs) are a separate class of organic semiconductors. Anisotropic charge transport, high charge carrier mobility, and self-organizing properties have been regarded as superior properties of DLCs but their performance in devices, such as organic light-emitting diodes, has been inferior to the best performing conventional organic semiconductors.;Our group recently demonstrated that a DLC of donor-acceptor structure can bias electron over hole conduction if the occupied and unoccupied frontier orbitals are localized on different parts of the molecule and only the unoccupied frontier orbitals electronically interact in columnar stacks. This thesis describes the first systematic approach to different types of donor-acceptor DLCs and the investigation of their mesomorphism and optoelectronic properties.;In spite of their large aspect ratios, four board-shaped donor-acceptor-donor quinoxalinophenanthrophenazine (QPP) dyes (Chapters 2 and 3) induce complex columnar mesomorphism over wide temperature ranges. These QPP derivatives also show strong fluorescence in solution and as thin films. This strong fluorescence in columnar mesophases is explained with a nonparallel orientation of the elongated donor-acceptor cores in the columnar stacks that minimizes interactions between transition dipole moments of co-facially stacked molecules. Opto-electronic properties suggest that the QPP derivatives are organic semiconductors.;Inspired by the donor-acceptor concept, we generated novel ionic DLCs based on imidazole and imidazolium structures (Chapter 5). Unexpectedly, only the ionic triphenylenoimidazolium derivatives display columnar mesomorphism. Strong ionic interactions between the cores are apparently required for the formation of columnar mesophases. Overall, these compounds are rather unusual because few ionic DLCs have the charge localized on the aromatic core. Most often the charged group is attached via spacer chains. A first review (Chapter 4) dedicated to thermotropic ionic DLCs was published in the Isr. J. Chem.;Finally, two star-shaped donor-acceptor DLCs based on a hexaazatriphenylene core (Chapter 6) are reported that display columnar mesomorphism over wide ranges of temperature. The initial microwave conductivity data indicate that both compounds are probably electron conductors and ToF mobility measurements are presently conducted to verify this conclusion.
机译:盘状液晶(DLC)的柱状中间相是一类单独的有机半导体。各向异性电荷传输,高电荷载流子迁移率和自组织特性被认为是DLC的优良特性,但是它们在诸如有机发光二极管之类的器件中的性能却不如性能最佳的常规有机半导体。最近证明,如果被占据和未被占据的前沿轨道位于分子的不同部分上,并且只有未被占据的前沿轨道在柱状堆叠体中进行电子相互作用,则施主-受主结构的DLC可以使电子偏向空穴传导。本论文描述了第一种系统的方法来处理不同类型的供体-受体DLC以及研究它们的同构和光电性能。尽管纵横比很大,但是四种板状供体-受体-供体喹喔啉基吩并菲吩嗪(QPP)染料2和3)在宽温度范围内引起复杂的柱状同晶。这些QPP衍生物在溶液和薄膜中也显示出强荧光。柱状中间相中的这种强荧光是通过柱状堆叠体中拉长的供体-受体核的非平行取向来解释的,该取向使共面堆叠分子的跃迁偶极矩之间的相互作用最小化。光电特性表明QPP衍生物是有机半导体。受施主-受主概念的启发,我们基于咪唑和咪唑鎓结构生成了新颖的离子DLC(第5章)。出乎意料的是,只有离子型三苯甲基咪唑鎓衍生物显示出柱状的同构。形成柱状中间相显然需要核之间的强离子相互作用。总体而言,这些化合物非常罕见,因为很少有离子DLC的电荷位于芳族核上。通常,带电基团通过间隔链连接。 Isr发表了有关热致性离子DLC的第一篇评论(第4章)。最后,据报道,两个基于六氮杂苯并菲核的星形供体-受体DLC(第6章)显示出在宽温度范围内呈柱状的同构。最初的微波电导率数据表明这两种化合物都可能是电子导体,目前正在进行ToF迁移率测量以验证这一结论。

著录项

  • 作者

    Chen, Shuai.;

  • 作者单位

    University of Windsor (Canada).;

  • 授予单位 University of Windsor (Canada).;
  • 学科 Chemistry Physical.;Physics Solid State.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 225 p.
  • 总页数 225
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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