石墨烯
材料科学
有机发光二极管
光电子学
有源矩阵
碳纳米管
石墨烯纳米带
薄膜晶体管
工作职能
电极
纳米技术
图层(电子)
化学
物理化学
作者
Dingdong Zhang,Jinhong Du,Weimin Zhang,Bo Tong,Yun Sun,Tian‐Yang Zhao,Lai‐Peng Ma,Dong‐Ming Sun,Hui-Ming Cheng,Wencai Ren
出处
期刊:Small
[Wiley]
日期:2023-06-02
标识
DOI:10.1002/smll.202302920
摘要
Integrating a graphene transparent electrode (TE) matrix with driving circuits is essential for the practical use of graphene in optoelectronics such as active-matrix organic light-emitting diode (OLED) display, however it is disabled by the transport of carriers between graphene pixels after deposition of a semiconductor functional layer caused by the atomic thickness of graphene. Here, the carrier transport regulation of a graphene TE matrix by using an insulating polyethyleneimine (PEIE) layer is reported. The PEIE forms an ultrathin uniform film (≤10 nm) to fill the gap of the graphene matrix, blocking horizontal electron transport between graphene pixels. Meanwhile, it can reduce the work function of graphene, improving the vertical electron injection through electron tunneling. This enables the fabrication of inverted OLED pixels with record high current and power efficiencies of 90.7 cd A−1 and 89.1 lm W−1, respectively. By integrating these inverted OLED pixels with a carbon nanotube-based thin-film transistor (CNT-TFT)-driven circuit, an inch-size flexible active-matrix OLED display is demonstrated, in which all OLED pixels are independently controlled by CNT-TFTs. This research paves a way for the application of graphene-like atomically thin TE pixels in flexible optoelectronics such as displays, smart wearables, and free-form surface lighting.
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