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Luminescent Cyclometalated Platinum and Palladium Complexes with Novel Photophysical Properties.

机译:具有新型光物理性质的发光环金属化铂和钯配合物。

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摘要

Organic light emitting diodes (OLEDs) is a rapidly emerging technology based on organic thin film semiconductors. Recently, there has been substantial investment in their use in displays. In less than a decade, OLEDs have grown from a promising academic curiosity into a multi-billion dollar global industry.;At the heart of an OLED are emissive molecules that generate light in response to electrical stimulation. Ideal emitters are efficient, compatible with existing materials, long lived, and produce light predominantly at useful wavelengths. Developing an understanding of the photophysical processes that dictate the luminescent properties of emissive materials is vital to their continued development.;Chapter 1 and Chapter 2 provide an introduction to the topics presented and the laboratory methods used to explore them. Chapter 3 discusses a series of tridentate platinum complexes. A synthetic method utilizing microwave irradiation was explored, as well as a study of the effects ligand structure had on the excited state properties. Results and techniques developed in this endeavor were used as a foundation for the work undertaken in later chapters.;Chapter 4 introduces a series of tetradentate platinum complexes that share a phenoxy-pyridyl (popy) motif. The new molecular design improved efficiency through increased rigidity and modification of the excited state properties. This class of platinum complexes were markedly more efficient than those presented in Chapter 3, and devices employing a green emitting complex of the series achieved nearly 100% electron-to-photon conversion efficiency in an OLED device.;Chapter 5 adapts the ligand structure developed in Chapter 4 to palladium. The resulting complexes exceed reported efficiencies of palladium complexes by an order of magnitude. This chapter also provides the first report of a palladium complex as an emitter in an OLED device. Chapter 6 discusses the continuation of development efforts to include carbazolyl components in the ligand. These complexes possess interesting luminescent properties including ultra-narrow emission and metal assisted delayed fluorescence (MADF) emission.
机译:有机发光二极管(OLED)是一种基于有机薄膜半导体的新兴技术。近来,已经对其在显示器中的使用进行了大量投资。在不到十年的时间里,OLED已从一个有前途的学术好奇心发展成为一个数十亿美元的全球产业。OLED的核心是发光分子,它们响应电刺激而发光。理想的发射器是高效的,与现有材料兼容,寿命长,并且主要产生有用波长的光。对决定发光材料发光特性的光物理过程的理解对它们的持续发展至关重要。;第一章和第二章介绍了所介绍的主题和探索它们的实验室方法。第三章讨论了一系列三齿铂络合物。探索了一种利用微波辐射的合成方法,并研究了配体结构对激发态性质的影响。这项工作中开发的结果和技术被用作后续章节中工作的基础。第4章介绍了一系列具有苯氧基-吡啶基(popy)基序的四齿铂配合物。新的分子设计通过增加刚度和改变激发态特性来提高效率。这类铂配合物的效率明显高于第3章中介绍的铂配合物,采用该系列绿色发射配合物的器件在OLED器件中实现了近100%的电子到光子转换效率。第5章适应了开发的配体结构在第4章中使用钯。所得的配合物比报道的钯配合物的效率高一个数量级。本章还提供了有关钯配合物作为OLED器件中的发射器的第一份报告。第6章讨论了继续努力以将咔唑基成分包括在配体中的问题。这些配合物具有令人感兴趣的发光特性,包括超窄发射和金属辅助延迟荧光(MADF)发射。

著录项

  • 作者

    Turner, Eric.;

  • 作者单位

    Arizona State University.;

  • 授予单位 Arizona State University.;
  • 学科 Engineering Materials Science.;Chemistry Inorganic.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 148 p.
  • 总页数 148
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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