首页> 外文期刊>Optical Materials >Doping chloro boron subnaphthalocyanines and chloro boron subphthalocyanine in simple OLED architectures yields warm white incandescent-like emissions
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Doping chloro boron subnaphthalocyanines and chloro boron subphthalocyanine in simple OLED architectures yields warm white incandescent-like emissions

机译:在简单的OLED架构中掺杂氯硼亚酞菁和氯硼亚酞菁会产生类似白炽灯的暖白色发射

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摘要

We have incorporated chloro boron subphthalocyanine (CI-BsubPc) and chloro boron subnapthalocyanines (C1-ClnBsubNcs) into organic light emitting diodes (OLEDs) that enabled. an overall warm white emission with CIE coordinates close to that of a 60 W incandescent lightbulb. More specifically, we have shown that Cl-BsubPc and CI-CInBsubNcs can be used as dopant emitters in a simple host-dopant architecture, and we have compared the use of NPB and Alga as potential hosts for these materials. When doped into Alga, Cl-BsubPc shows a strong orange emission, and CI-CInBsubNcs shows a moderately strong red emission. We have further demonstrated that Cl-BsubPc and Cl-ClnBsubNcs can be co-doped into the same layer giving combined orange and red emission peaks. A "cascade" energy transfer mechanism of sequential absorption and re-emission is proposed. Device performance characteristics such as luminance, current efficiency, photoluminescence efficiency, and external quantum efficiency are tabulated. Additionally, in view of ongoing research into white emitting OLEDs for indoor lighting purposes, the Colour Rendering Index (CRI), R9 values, and CIE co-ordinates for these devices are also discussed. We conclude from this study that the BsubNc chromophore has potential application as a red dopant in OLEDs including for indoor lighting. Additionally, given the scope for axial and peripheral derivatization of the BsubNc motif, we believe that this chromophore has many unexplored molecular design handles that will affect its ultimate performance and application in OLEDs and other optoelectronic devices. (C) 2017 Elsevier B.V. All rights reserved.
机译:我们已将氯硼亚酞菁(CI-BsubPc)和氯硼亚酞菁(C1-ClnBsubNcs)纳入启用的有机发光二极管(OLED)中。 CIE坐标的整体暖白光发射接近60 W白炽灯泡。更具体地说,我们已经表明,Cl-BsubPc和CI-CInBsubNcs可以在简单的主体-掺杂剂体系结构中用作掺杂剂发射极,并且我们比较了NPB和Alga作为这些材料的潜在主体的用途。掺杂到藻类中时,Cl-BsubPc显示出强烈的橙色发射光,而CI-CInBsubNcs显示出中等强度的红色发射光。我们进一步证明,Cl-BsubPc和Cl-ClnBsubNcs可以共掺杂到同一层中,从而产生橙色和红色发射峰。提出了一种顺序吸收和再发射的“级联”能量传递机理。列出了器件的性能特征,例如亮度,电流效率,光致发光效率和外部量子效率。另外,鉴于对用于室内照明目的的发白光的OLED的持续研究,还讨论了这些设备的显色指数(CRI),R9值和CIE坐标。我们从这项研究中得出结论,BsubNc生色团在OLED(包括室内照明)中作为红色掺杂剂具有潜在的应用。此外,考虑到BsubNc基序的轴向和周边衍生化的范围,我们认为该生色团具有许多未经探索的分子设计方法,这将影响其最终性能以及在OLED和其他光电器件中的应用。 (C)2017 Elsevier B.V.保留所有权利。

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