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通过引入电荷注入中间层实现p型聚合物基发光场效应晶体管的大面积发光

Large Area Emission in p-Type Polymer-Based Light-Emitting Field-Effect Transistors by Incorporating Charge Injection Interlayers.

作者信息

Acar Gizem, Iqbal Muhammad Javaid, Chaudhry Mujeeb Ullah

机构信息

Faculty of Engineering and Natural Sciences, Sabanci University, Istanbul 34956, Turkey.

Department of Engineering, Durham University, South Rd, Durham DH13LE, UK.

出版信息

Materials (Basel). 2021 Feb 14;14(4):901. doi: 10.3390/ma14040901.

Abstract

Organic light-emitting field-effect transistors (LEFETs) provide the possibility of simplifying the display pixilation design as they integrate the drive-transistor and the light emission in a single architecture. However, in p-type LEFETs, simultaneously achieving higher external quantum efficiency (EQE) at higher brightness, larger and stable emission area, and high switching speed are the limiting factors for to realise their applications. Herein, we present a p-type polymer heterostructure-based LEFET architecture with electron and hole injection interlayers to improve the charge injection into the light-emitting layer, which leads to better recombination. This device structure provides access to hole mobility of ~2.1 cm V s and EQE of 1.6% at a luminance of 2600 cd m. Most importantly, we observed a large area emission under the entire drain electrode, which was spatially stable (emission area is not dependent on the gate voltage and current density). These results show an important advancement in polymer-based LEFET technology toward realizing new digital display applications.

摘要

有机发光场效应晶体管(LEFET)将驱动晶体管和发光功能集成在单一架构中,为简化显示像素化设计提供了可能。然而,在p型LEFET中,要在更高亮度下同时实现更高的外量子效率(EQE)、更大且稳定的发光面积以及高开关速度,是限制其应用实现的因素。在此,我们展示了一种基于p型聚合物异质结构的LEFET架构,其具有电子和空穴注入夹层,以改善电荷注入到发光层中,从而实现更好的复合。这种器件结构在2600 cd m的亮度下,空穴迁移率可达约2.1 cm V s,EQE为1.6%。最重要的是,我们观察到在整个漏极电极下有大面积发光,且在空间上是稳定的(发光面积不依赖于栅极电压和电流密度)。这些结果表明基于聚合物的LEFET技术在实现新型数字显示应用方面取得了重要进展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f8c8/7917658/2abe10b53897/materials-14-00901-g001.jpg

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