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Design of hybrid conjugated polymer materials: 1) Novel inorganic/organic hybrid semiconductors and 2) Surface modification via grafting approaches.

机译:杂化共轭聚合物材料的设计:1)新型无机/有机杂化半导体,以及2)通过接枝方法进行表面改性。

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摘要

The research presented in this dissertation focuses on the design and synthesis of novel hybrid conjugated polymer materials using two different approaches: (1) inorganic/organic hybrid semiconductors through the incorporation of carboranes into the polymer structure and (2) the modification of surfaces with conjugated polymers via grafting approaches. Hybrid conjugated polymeric materials, which are materials or systems in which conjugated polymers are chemically integrated with non-traditional structures or surfaces, have the potential to harness useful properties from both components of the material to help overcome hurdles in their practical realization in polymer-based devices. This work is centered around the synthetic challenges of creating new hybrid conjugated systems and their potential for advancing the field of polymer-based electronics through both greater understanding of the behavior of hybrid systems, and access to improved performance and new applications. Chapter 1 highlights the potential applications and advantages for these hybrid systems, and provides some historical perspective, along with relevant background materials, to illustrate the rationale behind this work.;Chapter 2 explores the synthesis of poly(fluorene)s with pendant carborane cages. The Ni(0) dehalogenative polymerization of a dibromofluorene with pendant carborane cages tethered to the bridging 9-position produced hybrid polymers produced polymers which combined the useful emissive characteristics of poly(fluorene) with the thermal and chemical stability of carborane cages. The materials were found to display increased glass transition temperatures and showed improved emission color stability after annealing at high temperatures relative to the non-hybrid polymer.;The design and synthesis of a poly(fluorene)-based hybrid material with carborane cages in the backbone, rather than as pendant groups, begins in chapter 3. Poly(fluorene) with p-carborane in the backbone is synthesized and characterized, and the material is found to be a high MW, soluble blue emitter which shows a higher glass transition temperature and greater stability than a non-hybrid polymer. UV absorbance and fluorescence spectroscopy indicated some electronic interaction between the conjugated polymer and the cages, but they did not appear to be fully conjugated in the traditional sense.;Chapter 4 describes the design, synthesis, and characterization of poly(fluorene) with o-carborane in the backbone. Profound changes in the behavior of the polymer, from its polymerization behavior to its emission characteristics, were observed and their origins are discussed. Experiments to explore the nature of the cage/polymer interactions were performed and possible applications which take advantage of the unique nature of the o-carborane hybrid polymer are explored and discussed.;Hybrid conjugated polymer materials via grafting approaches to surfaces and surface modification are discussed starting in chapter 5. The synthesis of a dibromofluorene-based silane coupling agent for the surface functionalization of oxide surfaces is presented, and the surface directed Ni(0) dehalogenative polymerization of poly(dihexylfluorene) is explored.;Chapter 6 focuses on the exploration of conjugated polymer/cellulose hybrid materials. Surface medication of cellulose materials with monomer-like anchor points is discussed. Grafting of the modified cellulose with conjugated polymers was explored and the grafting of three different repeat structures based on fluorene-, fluorenevinylene-, and fluoreneethynylene motifs were optimized to provide a general route to cellulose/conjugated polymer hybrid materials. Characterization and possible applications of such hybrid materials are discussed.;Finally, chapter 7 is devoted to the simultaneous surface patterning and functionalization of poly(2-hydroxyethylmethacrylate) thin films using a silane infusion-based wrinkling technique. While not a conjugated polymer system, the spontaneous patterning and functionalization methods explored in this chapter produce hybrid organic/inorganic polymer thin films which have applications that range from optics, to adhesion, to polymer-based electronics, and the research compliments the other chapters. The spontaneous generation of complex patterns, of a small scale approaching 100nm feature size, over a large area with simultaneous control over surface chemistry is explored. Examples of complex, hierarchically patterned films which integrate lithographic processes such as nanoimprint lithography and electron beam lithography with spontaneous patterning via wrinkling are presented.
机译:本论文的研究重点是通过两种不同的方法对新型杂化共轭高分子材料进行设计和合成:(1)将碳硼烷掺入聚合物结构中的无机/有机杂化半导体;(2)共轭表面改性接枝方法制备聚合物。杂化共轭聚合物材料是共轭聚合物与非传统结构或表面化学结合的材料或系统,具有利用材料两种成分的有用特性来帮助克服基于聚合物的实际实现中的障碍的潜力。设备。这项工作的重点是创建新的混合共轭系统所面临的综合挑战,以及它们通过更深入地了解混合系统的行为以及获得改进的性能和新应用而在基于聚合物的电子学领域中的发展潜力。第1章重点介绍了这些杂化系统的潜在应用和优势,并提供了一些历史观点以及相关的背景材料,以说明这项工作的基本原理。第二章探讨了带有碳硼烷侧链的聚芴的合成。二溴芴的Ni(0)脱卤聚合反应是将碳硼烷侧链固定在桥接9位生成的杂化聚合物上,该聚合物结合了聚芴的有用发射特性与碳硼烷笼的热稳定性和化学稳定性。相对于非杂化聚合物,发现该材料显示出更高的玻璃化转变温度并在高温退火后表现出改善的发射颜色稳定性。;骨架中具有碳硼烷笼的聚芴基杂化材料的设计与合成而不是作为侧基,从第3章开始。合成并表征了在主链中带有对-碳环的聚芴,并发现该材料是高MW可溶性蓝色发射体,显示出更高的玻璃化转变温度和比非混合聚合物具有更高的稳定性。紫外吸收和荧光光谱表明共轭聚合物与笼子之间存在一些电子相互作用,但在传统意义上它们似乎并未完全共轭。;第4章描述了邻位聚芴的设计,合成和表征。骨架中的碳硼烷。从聚合物的聚合行为到发射特性,聚合物的行为发生了深刻的变化,并对其起源进行了讨论。进行了探索保持架/聚合物相互作用性质的实验,并探讨和讨论了利用邻-碳烷杂化聚合物独特性质的可能应用。;讨论了通过表面接枝和表面改性的混合共轭聚合物材料从第5章开始。介绍了用于氧化物表面的表面官能化的基于二溴芴的硅烷偶联剂的合成,并探讨了聚二己基芴的表面定向Ni(0)脱卤聚合反应。;第6章着重探讨共轭聚合物/纤维素杂化材料的制造。讨论了具有单体样锚点的纤维素材料的表面药物。探索了改性纤维素与共轭聚合物的接枝,并优化了基于芴-,芴-亚乙烯基-和芴乙炔基的三种不同重复结构的接枝,从而为纤维素/共轭聚合物杂化材料提供了通用途径。最后讨论了这种杂化材料的表征和可能的应用。最后,第7章专门介绍了使用基于硅烷注入的起皱技术对聚(2-甲基丙烯酸羟乙酯)薄膜进行同时的表面构图和功能化。虽然不是共轭聚合物系统,但本章探讨的自发图案和功能化方法可产生有机/无机杂化聚合物薄膜,其应用范围从光学,粘合到基于聚合物的电子产品,该研究与其他章节互为补充。探索了在大范围内自发产生复杂图案的小规模,其特征尺寸接近100nm,同时控制表面化学性质。提出了复杂的,分层图案化的薄膜的示例,这些薄膜将诸如纳米压印光刻和电子束光刻之类的光刻工艺与通过起皱的自发图案化相结合。

著录项

  • 作者

    Peterson, Joseph J.;

  • 作者单位

    University of Massachusetts Amherst.;

  • 授予单位 University of Massachusetts Amherst.;
  • 学科 Chemistry Polymer.;Political Science General.;Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 2012
  • 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

  • 入库时间 2022-08-17 11:42:46

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