Electro-optically Efficient and Thermally Stable Multilayer Semitransparent Pristine Ag Cathode Structure for Top-Emission Organic Light-Emitting Diodes

被引:28
作者
Kim, Seong Keun [1 ]
Lampande, Raju [1 ]
Kwon, Jang Hyuk [1 ]
机构
[1] Kyung Hee Univ, Dept Informat Display, Seoul 02447, South Korea
来源
ACS PHOTONICS | 2019年 / 6卷 / 11期
关键词
microcavity effect; organic wetting inducer; semitransparent pristine silver cathode; top-emitting organic light emitting diode; thermal stability; SILVER; TRANSPARENT; DEVICES; FILMS;
D O I
10.1021/acsphotonics.9b01155
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
To attain high efficiency and stability in a top-emission organic light-emitting diode (TEOLED), the semitransparent metal cathode must have high transmittance, low absorbance, and uniform surface properties under continuous driving conditions. However, conventional semitransparent metal electrodes have numerous fundamental issues. Here, we report an electro-optically efficient and stable semitransparent pristine thin Ag cathode configuration for the high performances of TEOLED. A multilayer semitransparent cathode structure is fabricated by sandwiching a thin silver (Ag) layer between new organic wetting inducer and capping layer, 1,4-bis(2-phenyl-1,10-phenanthrolin-4-yl)benzene (p-bPPhenB). A thin Ag layer in the presence of p-bPPhenB exhibits superior optical and electrical properties, including a high transmittance of 83.8% at 550 nm, low absorbance of 7.65% at 550 nm, and the low sheet resistance of 2.1 Omega/sq, respectively, at room temperature and even under 110 degrees C for 100 h. It is observed that our organic wetting inducer and capping layer, p-bPPhenB has considerable influence on the stabilization of surface properties of the thin Ag film by forming coordination bond between the Ag atoms and nitrogen atoms of p-bPPhenB through donating unshared electrons to the Ag atom. An optically optimized phosphorescent green TEOLED with this pure Ag cathode configuration enables a low driving voltage of 5.0 V at 10 mA/cm(2) and remarkably high maximum current efficiency of about 167 cd/A compared with the Mg:Ag (10:1) cathode (5.4 V and 109 cd/A).
引用
收藏
页码:2957 / 2965
页数:17
相关论文
共 39 条
  • [1] [Anonymous], 2014, IJSRP
  • [2] [Anonymous], IJCA
  • [3] [Anonymous], PLOS ONE
  • [4] Making silver a stronger n-dopant than cesium via in situ coordination reaction for organic electronics
    Bin, Zhengyang
    Dong, Guifang
    Wei, Pengcheng
    Liu, Ziyang
    Zhang, Dongdong
    Su, Rongchuan
    Qiu, Yong
    Duan, Lian
    [J]. NATURE COMMUNICATIONS, 2019, 10 (1)
  • [5] Transparent organic light-emitting devices with LiF/Mg:Ag cathode
    Chen, BJ
    Sun, XW
    Tan, SC
    [J]. OPTICS EXPRESS, 2005, 13 (03): : 937 - 941
  • [6] Recent Developments in Top-Emitting Organic Light-Emitting Diodes
    Chen, Shufen
    Deng, Lingling
    Xie, Jun
    Peng, Ling
    Xie, Linghai
    Fan, Quli
    Huang, Wei
    [J]. ADVANCED MATERIALS, 2010, 22 (46) : 5227 - 5239
  • [7] Effect of driving method on the degradation of organic light emitting diodes
    Cusumano, P
    Buttitta, F
    Di Cristofalo, A
    Calí, C
    [J]. SYNTHETIC METALS, 2003, 139 (03) : 657 - 661
  • [8] High-efficiency semiconductor resonant-cavity light-emitting diodes: A review
    Delbeke, D
    Bockstaele, R
    Bienstman, P
    Baets, R
    Benisty, H
    [J]. IEEE JOURNAL OF SELECTED TOPICS IN QUANTUM ELECTRONICS, 2002, 8 (02) : 189 - 206
  • [9] Comparison of electronic structures of mass-selected Ag clusters and thermally grown Ag islands on sputter-damaged graphite surfaces
    Dietsche, R.
    Lim, D. C.
    Bubek, M.
    Lopez-Salido, I.
    Gantefoer, G.
    Kim, Y. D.
    [J]. APPLIED PHYSICS A-MATERIALS SCIENCE & PROCESSING, 2008, 90 (03): : 395 - 398
  • [10] Duan L, 2009, 2009 SID INTERNATIONAL SYMPOSIUM DIGEST OF TECHNICAL PAPERS, VOL XL, BOOKS I - III, P1714