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Controlling the Physical Properties of Organic Semiconductors through Siloxane Chemistry and other Organic Electronic Materials.

机译:通过硅氧烷化学和其他有机电子材料控制有机半导体的物理性质。

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摘要

Triarylamine type materials with vastly altered physical properties are synthesized by hybridizing organic semiconducting structures with silicone and siloxane groups. By altering the silicon content of these materials, we can tune their physical composition from free flowing liquids, to amorphous glasses, to cross-linked films. Much of this modification is enabled by the unique use of a metal-free Si-H activation chemistry; the Piers-Rubinsztajn reaction. This chemistry is demonstrated to be a general and rapid way to build up hybrid semiconducting structures. Key to the utility of these materials in electronic devices, it is shown that hybridization with silicon groups has a negligible effect on the useful electrochemical properties of the base materials. Building on this, it is shown that charge carrier mobility through a prototypical liquid organic semiconductor is similar to the base materials and transport is described by existing dispersive transport theories. Finally, two side projects in the area of organic electronics are discussed. New phthalonitrile based fluorophores are characterized and their utility as deep-blue emitting dopants in organic light emitting diodes is demonstrated. These same pi-extended phthalonitriles can also be used as precursors to new red-shifted BsubPcs which display exceptional electrochemical stability and tuning.
机译:通过使有机半导体结构与有机硅和硅氧烷基团杂化,可以合成出物理性能发生很大变化的三芳基胺类材料。通过改变这些材料的硅含量,我们可以调整它们的物理组成,从自由流动的液体到无定形玻璃再到交联膜。这种修改的大部分是通过独特使用无金属的Si-H活化化学来实现的。 Piers-Rubinsztajn反应。事实证明,这种化学方法是建立混合半导体结构的通用且快速的方法。这些材料在电子设备中的实用性的关键在于,与硅基团的杂交对基础材料的有用电化学性能的影响可忽略不计。在此基础上,表明通过典型液态有机半导体的载流子迁移率与基础材料相似,并且通过现有的分散传输理论描述了传输。最后,讨论了有机电子领域的两个项目。表征了新的基于邻苯二甲腈的荧光团,并证明了它们在有机发光二极管中作为深蓝色发射掺杂剂的效用。这些相同的pi延伸的邻苯二甲腈也可用作新的红移BsubPcs的前体,这些新的红移的BsubPcs具有出色的电化学稳定性和调节性。

著录项

  • 作者

    Kamino, Brett A.;

  • 作者单位

    University of Toronto (Canada).;

  • 授予单位 University of Toronto (Canada).;
  • 学科 Engineering Chemical.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 230 p.
  • 总页数 230
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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