有机发光二极管
串联
光电子学
材料科学
异质结
兴奋剂
二极管
量子效率
电流密度
掺杂剂
图层(电子)
纳米技术
物理
量子力学
复合材料
作者
Yuxuan Fan,Ahui Sun,Yuhe Tian,Pengchao Zhou,Yixiao Niu,Wei Shi,Bin Wei
标识
DOI:10.1088/1361-6463/ac683d
摘要
Abstract The tandem organic light-emitting diodes (OLEDs) have the advantages of small current density, high current efficiency (CE), and long lifetime. We have developed the conventional and inverted tandem OLEDs using n- and p-doped planar heterojunction as a charge generation layer (CGL). The CGL consists of the bathophenanthroline:Cs 2 CO 3 and N,N’-di-[(1-naphthalenyl)-N,N’-diphenyl]-1,1′-biphenyl)-4,4′-diamine:MoO 3 bilayer structure to connect the deep blue- and deep red-emitting units. The turn-on voltage, luminescence, CE, and external quantum efficiencies of the conventional tandem OLED are 7.2 V, 5083 cd m −2 , 8.45 cd A −1 , and 13.94%, respectively, and the color rendering ability remains stable at a high current density of 60 mA cm −2 . Moreover, the efficiency roll-off of the inverted tandem OLED is optimized to 5.5% at a luminance of 1000 cd m −2 . Furthermore, a large-area (50 × 50 mm 2 ) parallel OLEDs with a tunable red-emitting area are fabricated. The development of the OLEDs provides a new direction for the application of OLEDs in plant growth.
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