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用于多层光电子器件中有效能带剪裁的金属氧化物电荷转移络合物

Metal oxide charge transfer complex for effective energy band tailoring in multilayer optoelectronics.

作者信息

Kim Moohyun, Kwon Byoung-Hwa, Joo Chul Woong, Cho Myeong Seon, Jang Hanhwi, Kim Ye Ji, Cho Hyunjin, Jeon Duk Young, Cho Eugene N, Jung Yeon Sik

机构信息

Department of Materials Science and Engineering, Korea Advanced Institute of Science and Technology (KAIST), 291 Daehak-ro, Yuseong-gu, Deajeon, 34141, Republic of Korea.

Reality Device Research Division, Electronics and Telecommunications Research Institute (ETRI), 218, Gajeong-ro, Yuseong-gu, Daejeon, 34129, Republic of Korea.

出版信息

Nat Commun. 2022 Jan 10;13(1):75. doi: 10.1038/s41467-021-27652-3.

Abstract

Metal oxides are intensively used for multilayered optoelectronic devices such as organic light-emitting diodes (OLEDs). Many approaches have been explored to improve device performance by engineering electrical properties. However, conventional methods cannot enable both energy level manipulation and conductivity enhancement for achieving optimum energy band configurations. Here, we introduce a metal oxide charge transfer complex (NiO:MoO-complex), which is composed of few-nm-size MoO domains embedded in NiO matrices, as a highly tunable carrier injection material. Charge transfer at the finely dispersed interfaces of NiO and MoO throughout the entire film enables effective energy level modulation over a wide work function range of 4.47 - 6.34 eV along with enhanced electrical conductivity. The high performance of NiO:MoO-complex is confirmed by achieving 189% improved current efficiency compared to that of MoO-based green OLEDs and also an external quantum efficiency of 17% when applied to blue OLEDs, which is superior to 1,4,5,8,9,11-hexaazatriphenylene-hexacarbonitrile-based conventional devices.

摘要

金属氧化物被广泛应用于多层光电器件,如有机发光二极管(OLED)。人们已经探索了许多方法来通过调控电学性质来提高器件性能。然而,传统方法无法同时实现能级调控和电导率增强,以达到最佳能带结构。在此,我们引入一种金属氧化物电荷转移复合物(NiO:MoO复合物),它由嵌入NiO基体中的几纳米大小的MoO域组成,作为一种高度可调谐的载流子注入材料。在整个薄膜中,NiO和MoO精细分散的界面处的电荷转移能够在4.47 - 6.34 eV的宽功函数范围内实现有效的能级调制,同时提高电导率。与基于MoO的绿色OLED相比,NiO:MoO复合物实现了189%的电流效率提升,应用于蓝色OLED时外部量子效率达到17%,证实了其高性能,优于基于1,4,5,8,9,11-六氮杂三亚苯-六腈的传统器件。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9518/8748812/35050fb8f670/41467_2021_27652_Fig1_HTML.jpg

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