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基于离子过渡金属配合物改善发光电化学电池的载流子平衡

Improving the carrier balance of light-emitting electrochemical cells based on ionic transition metal complexes.

作者信息

Su Hai-Ching, Hsu Jia-Hong

机构信息

Institute of Lighting and Energy Photonics, National Chiao Tung University, Tainan 71150, Taiwan.

出版信息

Dalton Trans. 2015 May 14;44(18):8330-45. doi: 10.1039/c4dt01675k.

Abstract

Recently, solid-state light-emitting electrochemical cells (LECs) based on ionic transition metal complexes (iTMCs) have attracted much research interest since they have the advantages of a simple device structure, a low operation voltage and compatibility with air-stable electrodes. These properties enable LECs to be cost-effective, versatile and power-efficient organic light-emitting sources. However, it is generally not easy to modify the molecular structure to achieve balanced carrier mobilities without altering the photoluminescence quantum yield of the iTMC. Furthermore, the carrier balance and the consequent device efficiency of single-layered LECs would not be easy to optimize since no carrier injection and transport layers can be used. In this perspective, some reported techniques to improve carrier balance of LECs based on iTMCs are described and reviewed. The importance and impact of these studies are highlighted. The effects on device lifetime and turn-on time because of employing these techniques to improve the carrier balance are also discussed. This perspective concludes that even with electrochemically doped layers, improving the carrier balance of LECs would be required for realizing efficient electroluminescent emission from simple-structure organic light-emitting sources.

摘要

最近,基于离子过渡金属配合物(iTMCs)的固态发光电化学电池(LECs)引起了广泛的研究兴趣,因为它们具有器件结构简单、工作电压低以及与空气稳定电极兼容的优点。这些特性使LECs成为具有成本效益、多功能且节能的有机发光源。然而,在不改变iTMC的光致发光量子产率的情况下,通常不容易修改分子结构以实现平衡的载流子迁移率。此外,由于不能使用载流子注入和传输层,单层LECs的载流子平衡以及随之而来的器件效率将不容易优化。从这个角度出发,本文描述并综述了一些已报道的改善基于iTMCs的LECs载流子平衡的技术。强调了这些研究的重要性和影响。还讨论了采用这些技术改善载流子平衡对器件寿命和开启时间的影响。本文的观点认为,即使有电化学掺杂层,为了实现简单结构有机发光源的高效电致发光,改善LECs的载流子平衡仍是必要的。

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