期刊文献+
共找到3篇文章
< 1 >
每页显示 20 50 100
Organic Light-Emitting Devices with a LiF Hole Blocking Layer 被引量:2
1
作者 连加荣 袁永波 周翔 《Chinese Physics Letters》 SCIE CAS CSCD 2007年第3期828-830,共3页
We introduce a thin LiF layer into tris-8-hydroxyquinoline aluminium (Alq3 ) based bilayer organic light-emitting devices to block hole transport. By varying the thickness and position of this LiF layer in Alq3, we ... We introduce a thin LiF layer into tris-8-hydroxyquinoline aluminium (Alq3 ) based bilayer organic light-emitting devices to block hole transport. By varying the thickness and position of this LiF layer in Alq3, we obtain an electroluminescent efficiency increase by a factor of two with respect to the control devices without a LiF blocking layer. By using a 10nm dye doped Alq3 sensor layer, we prove that LiF can block holes and excitons effectively. Experimental results suggest that the thin LiF layer may be a good hole and exciton blocking layer. 展开更多
关键词 ENHANCED brightness ELECTROLUMINESCENCE EFFICIENCY INJECTION DIODES
下载PDF
Enhance Exchanges and Cooperation to Usher in a Bright Future of China-France Relations with Joint Efforts
2
作者 Zhang Baowen Ma Jingjing 《International Understanding》 2017年第2期38-40,共3页
Ladies and Gentlemen,Dear friends,I’m delighted to attend the roundtable discussion jointly held by the Chinese Association for International Understanding (CAFIU) and Jean Jaurès Foundation of France,and have e... Ladies and Gentlemen,Dear friends,I’m delighted to attend the roundtable discussion jointly held by the Chinese Association for International Understanding (CAFIU) and Jean Jaurès Foundation of France,and have exchanges with you in person who have been supportive 展开更多
关键词 of for on in Enhance Exchanges and Cooperation to Usher in a Bright Future of China-France Relations with Joint Efforts with
下载PDF
Enhanced efficiency and brightness in organic lightemitting devices with MoO_3 as hole-injection layer 被引量:1
3
作者 杨惠山 吴丽双 《Optoelectronics Letters》 EI 2017年第1期29-32,共4页
The organic light-emitting devices(OLEDs) using 4,4',4''-tris{N-(3-methylphenyl)-N-phenylamin}triphenylamine(m-MTDATA) and MoO_3 or 1,3,5-triazo-2,4,6-triphosphorine-2,2,4,4,6,6-tetrachloride(TAPC) and MoO... The organic light-emitting devices(OLEDs) using 4,4',4''-tris{N-(3-methylphenyl)-N-phenylamin}triphenylamine(m-MTDATA) and MoO_3 or 1,3,5-triazo-2,4,6-triphosphorine-2,2,4,4,6,6-tetrachloride(TAPC) and MoO_3 as the hole-injection layer(HIL) were fabricated. MoO_3 can be expected to be a good injection layer material and thus enhance the emission performance of OLED. The highest occupied molecular(HOMO) of MoO_3 is between those of m-MTDATA or TAPC and N,N'-bis-(1-naphthyl)-N,N'-diphenyl-1,1'-biphenyl-4,4'-diamine(NPB),which reduces the hole-injection barrier and improves the luminance of the OLEDs. The current efficiency is improved compared with that of the device without the MoO_3 layer. The highest luminous efficiency of the device with 2-nm-thick MoO_3 as HIL is achieved as 5.27 cd/A at 10 V,which is nearly 1.2 times larger than that of the device without it. Moreover,the highest current efficiency and power efficiency of the device with the structure indium-tin oxide(ITO)/TAPC(40 nm)/MoO_3(2 nm)/Tc Ta:Ir(ppy)3(10%,10 nm)/ tris-(8-hydroxyquinoline) aluminium(Alq)(60 nm)/Li F(1 nm)/Al are achieved as 37.15 cd/A and 41.23 lm/W at 3.2 V and 2.8 V,respectively. 展开更多
关键词 OLEDs Mo Enhanced efficiency and brightness in organic lightemitting devices with MoO3 as hole-injection layer NPB ITO
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部