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Methodologies for Controlled Conjugated Polymer Synthesis and Characterization of Small Molecule Organic Semiconductors.

机译:小分子有机半导体的可控共轭聚合物合成和表征方法。

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摘要

Conjugated polymers can broadly be described as materials which have a structure composed of repeating monomeric units that show extended electronic communication along the backbone. The extended pi-conjugated nature of these materials gives them a set of unique electronic and optical properties, and has lead to their application in a multitude of various technologies. Of specific interest is the application of these materials in various organic electronics applications, such as solution processed plastic solar cells, light emitting diodes, and field effect transistors. Herein is described the synthesis of a class of well-defined, highly active organometallic initiators for use in controlled polymer synthesis. The polymers prepared using the nickel based initiators in Grignard metathesis polymerization posses the following characteristics: rapid generation of high molecular weight polymers, low polydispersity, linear relation between monomer conversion and molecular weight growth, and the selective transfer of an initiating moiety from the organometallic initiator to one polymer chain end. This initiator was then used to prepare a new class of biosensor materials wherein the polymer had a well defined biosensing end group.;Additionally, a series of small molecule donors have been developed that have shown promise in a wide variety of organic electronic applications. These materials can broadly be described as having a D'ADAD' type structure where D, D', and A correspond to electron rich and electron deficient aromatic heterocycles, respectively. By tuning the identity of these groups and the side-chains attached to them, one can subtly influence the optical, electronic, and physical properties of the materials. These materials were investigated via single crystal x-ray diffraction studies to gain insight into how changes to the molecule structure such as heteroatom regioisomerism and isoelectronic substitutions effected the molecular structure. These changes in molecular structure were then correlated to changes in the bulk, optical, and electronic properties. Finally, the single crystal x-ray structure of a high performing solar cell material was investigated via ab initio methods in an attempt to gain insight into why this particular material preformed so well in solar cell devices, and whether design rules for future small molecule semiconductors could be formulated.
机译:共轭聚合物可以广义地描述为具有由重复的单体单元组成的结构的材料,这些单体单元显示出沿着骨架的扩展电子通信。这些材料的π共轭扩展性质为其赋予了一组独特的电子和光学特性,并导致了它们在多种技术中的应用。特别感兴趣的是这些材料在各种有机电子应用中的应用,例如溶液处理的塑料太阳能电池,发光二极管和场效应晶体管。本文描述了用于受控聚合物合成的一类明确定义的,高活性的有机金属引发剂的合成。在格利雅(Grignard)复分解聚合反应中使用镍基引发剂制备的聚合物具有以下特征:高分子量聚合物的快速生成,低多分散性,单体转化率与分子量增长之间的线性关系以及有机金属引发剂中引发部分的选择性转移到一个聚合物链末端。然后将该引发剂用于制备一类新的生物传感器材料,其中的聚合物具有定义明确的生物传感端基。此外,已开发出一系列小分子供体,在许多有机电子应用中显示出了希望。这些材料可广义地描述为具有D'ADAD'型结构,其中D,D'和A分别对应于富电子和贫电子的芳族杂环。通过调整这些基团和与它们相连的侧链的身份,可以巧妙地影响材料的光学,电子和物理性质。通过单晶X射线衍射研究对这些材料进行了研究,以深入了解分子结构的变化(例如杂原子区域异构和等电取代)如何影响分子结构。然后,这些分子结构的变化与体积,光学和电子性质的变化相关。最后,通过从头开始的方法研究了高性能太阳能电池材料的单晶X射线结构,以期了解为什么这种特殊材料在太阳能电池设备中的性能如此出色,以及未来小分子半导体的设计规则可以制定。

著录项

  • 作者

    Bakus, Ronald C., II.;

  • 作者单位

    University of California, Santa Barbara.;

  • 授予单位 University of California, Santa Barbara.;
  • 学科 Chemistry Polymer.;Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 218 p.
  • 总页数 218
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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