光电子学
晶体管
材料科学
亮度
发光二极管
电压
二极管
有机发光二极管
有源矩阵
薄膜晶体管
有机电子学
电极
阈值电压
纳米技术
电气工程
光学
化学
物理
图层(电子)
物理化学
工程类
作者
Zhongbin Wu,Yuan Liu,Erjuan Guo,Ghader Darbandy,Shu‐Jen Wang,René Hübner,Alexander Kloes,Hans Kleemann,Karl Leo
出处
期刊:Nature Materials
[Springer Nature]
日期:2021-03-01
卷期号:20 (7): 1007-1014
被引量:40
标识
DOI:10.1038/s41563-021-00937-0
摘要
Organic light-emitting transistors, three-terminal devices combining a thin-film transistor with a light-emitting diode, have generated increasing interest in organic electronics. However, increasing their efficiency while keeping the operating voltage low still remains a key challenge. Here, we demonstrate organic permeable base light-emitting transistors; these three-terminal vertical optoelectronic devices operate at driving voltages below 5.0 V; emit in the red, green and blue ranges; and reach, respectively, peak external quantum efficiencies of 19.6%, 24.6% and 11.8%, current efficiencies of 20.6 cd A–1, 90.1 cd A–1 and 27.1 cd A–1 and maximum luminance values of 9,833 cd m–2, 12,513 cd m–2 and 4,753 cd m–2. Our simulations demonstrate that the nano-pore permeable base electrode located at the centre of the device, which forms a distinctive optical microcavity and regulates charge carrier injection and transport, is the key to the good performance obtained. Our work paves the way towards efficient and low-voltage organic light-emitting transistors, useful for power-efficient active matrix displays and solid-state lighting. Vertical organic light-emitting transistors are realized by using a porous base electrode in the centre of the device, which improves efficiency and reduces operating voltage by regulating charge transport and forming an optical microcavity.
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