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Electrochemiluminescent and electroluminescent devices containing polypyridine transition metal complexes.

机译:包含聚吡啶过渡金属配合物的电化学发光和电致发光器件。

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摘要

Light emitting devices based on solid thin layers of organic compounds and/or inorganic coordination complex materials fall into two general categories, electrochemiluminescent (ECL) and electroluminescent (EL) systems. The basic description of the two device motifs is quite similar; however, there are a number of critical differences in the mechanisms by which they operate. These considerations in turn dictate the choices of materials employed in the construction of the two types of devices. The introductory chapter in this work describes in detail the conceptual differences between ECL and EL devices, and the resulting materials requirements.; In the second chapter, an ECL system is described based on a substituted tris(bipyridine)ruthenium (II), “[Ru(LL)3]”, monomer complex which exhibits intense emission following either photo- or electrochemically-generated excitation. A solid state “sandwich cell” device is constructed following thermal polymerization of the complex and the performance of this device is reported.; In the third chapter, a series of three polymerizable [Ru(LL)3]-based complexes is examined. The electronic properties of films composed of these materials are studied after careful electrochemical reduction to yield conductive polymers, with emphasis on conductivities and work functions. These materials are considered for use as the cathode layers for EL devices employing commonly reported emissive compounds. The reduced [Ru(LL)3] conducting polymer with the lowest work function was successfully used as a cathode in devices with two common EL materials. These results sufficed as proof-of-concept for the use of reduced coordination complexes as cathodes in EL devices, but their performance was less than ideal.; Finally, the fourth chapter describes a related set of three coordination complexes of ruthenium and chromium (discrete molecules rather than polymers) that are also electrochemically reduced and subsequently used as cathode materials for EL devices. However, these complexes can be vapor deposited in the conductive state, and thus have important advantages in actual devices. The performance of systems including layers of these vapor deposited complexes is evaluated and is significantly improved over those devices reported in the previous chapter.
机译:基于有机化合物和/或无机配位化合物的固体薄层的发光器件可分为两大类:电致发光(ECL)和电致发光(EL)系统。这两个设备图案的基本描述非常相似。但是,它们的运行机制存在许多关键差异。这些考虑反过来决定了在两种类型的设备的构造中所使用的材料的选择。本工作的介绍性章节详细介绍了ECL和EL器件之间的概念差异以及由此产生的材料要求。在第二章中,我们描述了一种基于取代的三(联吡啶)钌(II)“ [Ru(LL) 3 ]”单体复合物的ECL系统,该单体复合物在任何一种光催化作用下均表现出强烈的发射光。或电化学激发。配合物进行热聚合后,构建了固态“三明治电池”装置,并报道了该装置的性能。在第三章中,研究了一系列三种可聚合的[Ru(LL) 3 ]基复合物。经过仔细的电化学还原以生成导电聚合物后,研究了由这些材料组成的薄膜的电子性能,重点是电导率和功函数。这些材料被认为用作采用通常报道的发光化合物的EL器件的阴极层。具有最低功函的还原型[Ru(LL) 3 ]导电聚合物已成功用作具有两种常见EL材料的器件中的阴极。这些结果足以作为在EL器件中使用还原的配位化合物作为阴极的概念证明,但其性能不理想。最后,第四章描述了一组相关的钌和铬的三个配位络合物(离散分子而非聚合物),它们也被电化学还原并随后用作EL器件的阴极材料。然而,这些络合物可以在导电状态下气相沉积,因此在实际装置中具有重要的优点。评估了包含这些气相沉积的复合物层的系统的性能,并且与上一章中报告的那些设备相比,这些性能得到了显着改善。

著录项

  • 作者

    Bloom, Corey Jay.;

  • 作者单位

    Colorado State University.;

  • 授予单位 Colorado State University.;
  • 学科 Chemistry Analytical.; Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 2003
  • 页码 110 p.
  • 总页数 110
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;工程材料学;
  • 关键词

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