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Synthesis of indeno[1,2-B]fluorenes and the incorporation of bodipy fluorophores into tetrakis(arylethynyl)benzenes.

机译:茚并[1,2-B]芴的合成以及将双联荧光团引入四(芳基乙炔基)苯中。

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摘要

Highly conjugated, carbon rich molecules are of great interest due to their unique optoelectronic properties. These molecules are now recognized as suitable materials for advanced materials applications such as light-emitting diodes, photovoltaics, and thin film transistors. Of particular interest is the indenofluorene (IF) scaffold, a 6-5-6-5-6-fused ring system that holds a striking topological similarity to pentacene, a very successful electron donating organic semiconductor. Also of interest is another class of compounds referred to as tetrakis(arylethynyl)benzenes, TAEBs, which are cruciform-shaped molecules that possess numerous pathways for electronic and photonic transfer and are amenable to a host of substitution patterns.;Chapter I examines the history of the IF scaffold and its development over the last century through the use of literature examples relating to both its synthesis and potential use as an emerging class of electron accepting materials. Chapter II introduces the feasibility of stable, fully conjugated IFs. Two examples of 5,6,11,12-tetraethynyl-indeno[1,2-b]fluorenes are synthesized where their structural and optoelectronic properties are explored. Chapter III further explores the IF scaffold and outlines the synthesis of a series of 6,12-diethynylindeno[1,2-b]fluorenes in conjunction with detailed computational, structural, and photophysical studies. Chapter IV discusses the synthesis and characterization of a series of 6,12-diarylindeno[1,2- b]fluorenes and examines their structural and optoelectronic properties. Chapter V describes a series of donor/acceptor-functionalized TAEBs that incorporate the 4,4-difluoro-4-bora-3a,4a,-diaza-s-indacene moiety, better known as BODIPY, as the acceptor unit. Additionally, two TAEB molecules and three structurally related bis(arylethynyl)benzene (BAEB) isomers where only acceptors are used to evaluate the effectiveness of the donor group are synthesized.;This dissertation includes both previously published and unpublished co-authored material.
机译:高度共轭的富碳分子由于其独特的光电特性而备受关注。这些分子现在被认为是适合高级材料应用的材料,例如发光二极管,光电器件和薄膜晶体管。特别令人感兴趣的是茚并芴(IF)支架,它是6-5-6-5-6稠合的环系统,与并五苯(一种非常成功的给电子有机半导体)具有惊人的拓扑相似性。同样令人感兴趣的是另一类称为四(芳基乙炔基)苯的化合物TAEB,它们是十字形分子,具有许多电子和光子转移途径,并且可以接受多种取代模式。;第一章回顾了历史IF支架的发展及其在上个世纪的发展,方法是通过使用有关其合成和潜在用途作为新兴的电子接受材料的文献实例。第二章介绍了稳定的,完全共轭的中频的可行性。合成了5,6,11,12-四乙炔基茚并[1,2-b]芴的两个实例,其中研究了它们的结构和光电性质。第三章进一步探讨了中频支架,并结合详细的计算,结构和光物理研究,概述了一系列6,12-二乙炔基[1,2-b]芴的合成。第四章讨论了一系列6,12-二芳基[1,2-b]芴的合成与表征,并考察了它们的结构和光电性能。第五章介绍了一系列供体/受体官能化的TAEB,它们结合了4,4-二氟-4-硼-3a,4a-二氮杂-s-茚并二烯部分(更好地称为BODIPY)作为受体单元。此外,还合成了两个TAEB分子和三个结构相关的双(芳基乙炔基)苯(BAEB)异构体,其中仅使用受体来评估供体基团的有效性。本论文包括以前发表和未发表的材料。

著录项

  • 作者

    Chase, Daniel Tyler.;

  • 作者单位

    University of Oregon.;

  • 授予单位 University of Oregon.;
  • 学科 Chemistry General.;Engineering Materials Science.;Chemistry Organic.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 339 p.
  • 总页数 339
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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