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Theories of phosphorescence in organo-transition metal complexes - From relativistic effects to simple models and design principles for organic light-emitting diodes

机译:有机过渡金属配合物中的磷光理论-从相对论效应到有机发光二极管的简单模型和设计原理

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摘要

We review theories of phosphorescence in cyclometalated complexes. We focus primarily on pseudooctahedrally coordinated t(2g)(6). metals (e.g., [Os(II)(bpy)(3)](2+), Ir(III)(ppy)(3) and Ir(III)(ptz)(3)) as, for reasons that are explored in detail, these show particularly strong phosphorescence. We discuss both first principles approaches and semi-empirical models, e.g., ligand field theory. We show that together these provide a clear understanding of the photophysics and in particular the lowest energy triplet excitation, T-1. In order to build a good model relativistic effects need to be included. The role of spin-orbit coupling is well-known, but scalar relativistic effects are also large - and are therefore also introduced and discussed. No expertise in special relativity or relativistic quantum mechanics is assumed and a pedagogical introduction to these subjects is given. Once both scalar relativistic effects and spin-orbit coupling are included, time dependent density functional theory (TDDFF) provides quantitatively accurate predictions of the radiative decay rates of the substates of T-1 in phosphorescent organotransition-metal complexes. We describe the pseudo-angular momentum model, and show that it reproduces the key experimental findings. For example, this model provides a simple explanation of the relative radiative rates of the substates of T-1, which differ by orders of magnitude. Special emphasis is placed on materials with potential applications as active materials in organic light-emitting diodes (OLEDs) and principles for the design of new complexes are identified on the basis of the insights provided by the theories reviewed. We discuss the remaining theoretical challenges, which include deepening our understanding of solvent effects and, vitally, understanding and predicting non-radiative decay rates. (C) 2015 Elsevier B.V. All rights reserved.
机译:我们回顾了环金属化配合物中磷光的理论。我们主要关注伪八面体协调的t(2g)(6)。金属(例如[Os(II)(bpy)(3)](2 +),Ir(III)(ppy)(3)和Ir(III)(ptz)(3))详细地,这些显示出特别强的磷光。我们讨论了第一原理方法和半经验模型,例如配体场论。我们表明,它们一起提供了对光物理的清晰理解,尤其是最低能量的三重态激发T-1。为了建立一个好的模型,需要包括相对论效应。自旋轨道耦合的作用是众所周知的,但是标量相对论效应也很大-因此也进行了介绍和讨论。假定没有相对论或相对论量子力学方面的专业知识,并且对这些主题进行了教学法介绍。一旦标量相对论效应和自旋轨道耦合都包括在内,时变密度泛函理论(TDDFF)就可以定量准确地预测磷光有机过渡金属络合物中T-1子态的辐射衰减率。我们描述了伪角动量模型,并表明它再现了关键的实验发现。例如,该模型提供了有关T-1子状态的相对辐射率的简单解释,它们的数量级不同。特别强调了在有机发光二极管(OLED)中作为活性材料具有潜在应用的材料,并且根据所审查的理论提供的见解,确定了设计新配合物的原理。我们讨论了剩余的理论挑战,其中包括加深我们对溶剂效应的理解,以及至关重要的是理解和预测非辐射衰变速率。 (C)2015 Elsevier B.V.保留所有权利。

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    Powell, B. J.;

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  • 年度 2015
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