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The Preparation and Modification of Phthalocyanine Containing Materials

机译:含酞菁材料的制备与改性

摘要

Phthalocyanines (Pcs) are highly conjugated, 18π-electron cyclic molecules composed of four isoindoline units that exhibit unique optical, electrical and chemical properties. While originally used as dyes and pigments, the use of Pcs in modern technology has increased dramatically due to improved understanding and processing capabilities. Work in this dissertation outlines a number of methods to prepare Pc-containing materials for use in various applications. Chapter 1 provides a brief review of methods used to prepare Pc-containing polymeric materials from both symmetric and asymmetric macrocycles. Discussion will focus on methods that incorporate symmetric Pcs as the focal point, with particular attention being paid to the influence of the peripheral substitution of the Pc on macromolecular structure and properties. Further discussion will focus on the utilization of asymmetric Pcs as auxiliary functionalities, such as at the terminus or as pendant groups, of larger macromolecular materials. Chapter 2 describes the preparation of linear Pc-containing polymers through ring-opening metathesis polymerization of a Pc monomer. Through proper selection of catalyst, well-defined polymers with Pcs as pendant groups were prepared. Due to the controlled nature of ROMP, polymers of varying architectures, composition, and size were synthesized. The effect of Pc metallation, polymer composition and architecture on the site-isolation of the chromophore was investigated in both solution and condensed-phase thin films. Chapter 3 reports on efforts to prepare linear polymers with companion functionalities for post-polymerization coupling of asymmetric Pcs. Polymers with pendant furan groups were prepared for coupling with asymmetric Pcs through Diels-Alder cycloaddition. Investigation indicated that while coupling was achievable, the presence of the Pc in the resultant polymer promoted undesired crosslinking when stored at ambient conditions in light. Attempts to mitigate this problem through alternation of functionality locations were attempted by placing the furan functionality on the Pc, but degradation of the furan occurred to quickly to perform coupling sufficiently. Chapter 4 discusses the preparation of Pc-containing networks through Diels-Alder cycloaddition of furan and maleimide containing tetrasubstituted Pcs. Following preparation of the various Pcs, network formation in various states was conducted including solution, molded thick films, and patterned assemblies. Chapter 5 summarizes the results presented in Chapters 2-4 and provides an outlook for some future directions based upon the work herein. In addition, some preliminary results of some of these directions will also be presented.
机译:酞菁(Pcs)是高度共轭的18π电子环状分子,由四个异吲哚啉单元组成,具有独特的光学,电学和化学性质。最初用作染料和颜料时,由于对理解和处理能力的提高,现代技术中PC的使用已大大增加。本论文的工作概述了多种制备含Pc材料用于各种应用的方法。第1章简要介绍了用于从对称和不对称大环化合物制备含Pc聚合物材料的方法。讨论将集中在以对称Pcs为焦点的方法上,尤其要注意Pc外围取代对大分子结构和性质的影响。进一步的讨论将集中于利用不对称的Pcs作为辅助功能,例如在大分子材料的末端或作为侧基。第2章介绍了通过Pc单体的开环复分解聚合制备线性的含Pc聚合物。通过适当选择催化剂,制备了具有明确定义的,以Pcs为侧基的聚合物。由于ROMP的受控性质,合成了各种结构,组成和尺寸的聚合物。在溶液和冷凝相薄膜中,研究了Pc金属化,聚合物组成和结构对生色团的位点隔离的影响。第3章报告了为不对称Pcs的聚合后偶联制备具有伴随功能的线性聚合物的努力。制备了具有呋喃侧基的聚合物,用于通过Diels-Alder环加成反应与不对称Pcs偶联。研究表明,尽管偶联是可以实现的,但是当在环境条件下于光线下储存时,所得聚合物中Pc的存在会促进不良交联。尝试通过将呋喃官能团放置在PC上来尝试通过更改功能位置来缓解此问题,但是呋喃降解很快就发生了,足以进行充分的偶联。第4章讨论了通过呋喃和马来酰亚胺四取代的Pcs的Diels-Alder环加成反应制备含Pc的网络。在准备好各种PC后,进行了各种状态的网络形成,包括溶液,成型厚膜和图案化组件。第5章总结了第2-4章中介绍的结果,并根据本文的工作对未来的发展方向进行了展望。此外,还将介绍其中一些指示的一些初步结果。

著录项

  • 作者

    Korth Bryan David;

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  • 年度 2012
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  • 原文格式 PDF
  • 正文语种 en
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