制作了HAT-CN作为空穴注入层的蓝、黄二基色分离的堆叠式高效有机发光二极管,器件结构为:ITO/2-TNATA或HAT-CN(x nm)/NPB(25 nm)/ADN(30 nm):TBPE (2%):DCJTB (1%)/Alq3 (20nm)/LiF(1 nm)/Al(100 nm).实验结果表明,HAT-CN对载流子的注入和色纯度的影响很明显.相比于传统器件将CuPc和2-TNATA作为空穴注入层,HAT-CN作为空穴注入层得到了更高的效率和色纯度,CIE 色坐标x=0.3309,y=0.3472,电流效率达到6.4 cd/A.
This paper investigated a high efficiency stacked white fluorescent organic lightemitting diodes consisting of separate blue and yellow elements with a 1,4,5,8,9,11-hexaazatriphenylene-hexacar bonitril (HAT-CN) hole injection layer.The configurations of the devices are ITO/2-TNATA or HAT-CN(x nm)/NPB (25 nm)/ADN (30 nm):TBPE (2%):DCJTB(1%)/Alq3(20 nm)/LiF (1 nm)/Al (100 nm).According to the experimental result,the effect of HAT-CN film on carrier injection and color purity were significant.This work obtained a higher efficiency and color purity for the WOLED with HAT-CN layer,as compared to the conventional devices with copper phthalocyanine (CuPc) or 2-TNATA materials as a hole injection layer.It shows pure-white light emitting with 1931 CIE chromaticity coordinates x=0.3309,y=0.3472,and a current efficiency of 6.4 cd/A.
参考文献
[1] | Anzenbacher P,Montes J V A,Takizawa S.High-purity white light from a simple single dopant host guest white organic light-emitting diode architecture[J].Appl.Phys.Lett.,2008,93 (16):163302(1-3). |
[2] | Sun Y R,Giebink N C,Kanno H,et al.Management of singlet and triplet excitons for efficient white organic lightemitting devices[J].Nature,2006,440:908-912. |
[3] | Li J,Chen P,Duan Y,et al.Highly efficient and high colour rendering index white organic light-emitting devices using bis(2-(2-fluorphenyl)-1,3-benzothiozolato-N,C2′) iridium (acetylacetonate) as yellow emitter[J].Semicond.Sci.Technol.,2007,22(7):798-802. |
[4] | Tsuzuki T,Tokito S.Highly efficient and low-voltage phosphorescent organic light emitting diodes using an iridium complex as the host material[J].Adv.Mater.,2007,19 (2):276-281. |
[5] | Wu Y S,Hwang S W,Chen H H.Efficient white organic light emitting devices with dual emitting layers[J].Thin Solid Films,2005,488 (1-2):265-269. |
[6] | D' Andrade B W,Forrest S R.White organic light-emitting devices for solid-state lighting[J].Adv.Mater.,2004,16 (18):1585-1590. |
[7] | Kanno H,Giebink N C,Sun Y,et al.Stacked white organic light-emitting devices based on a combination of fluorescent and phosphorescent emitters[J].Appl.Phys.Lett.,2006,89 (2):023503(1-3). |
[8] | Jiang X Y,Zhang Z L,Zhu W Q,et al.Highly efficient and stable white organic light emitting diode with triply doped structure[J].Displays,2006,27 (4-5):161-165. |
[9] | Li N,Lai S L,Wang P F,et al.Highly efficient nondoped green organic light-emitting devices based on a substituted triphenylpyridine derivative[J].Appl.Phys.Lett.,2009,95(13):133301(1-3). |
[10] | Kim Y K,Kim J W,Park Y S,Energy level alignment at a charge generation interface between 4,4′-bis(N-phenyl 1-naphthylamino) biphenyl and 1,4,5,8,9,11-hexaazatripheny lene-hexacarhonitrile[J].Appl.Phys.Lett.,2009,94 (6):063305(1-3). |
[11] | Liao L S,Klubek K P.Power efflciency improvement in a tandem organic light-emitting diode[J].Appl.Phys.Lett.,2008,92 (22):223311(1-3). |
[12] | Mi B X,Gao Z Q,Lee C S,et al.Reduction of molecular aggregation and its application to the high-performance blue perylene-doped organic electroluminescent device[J].Appl.Phys.Lett.,1999,75(26):4055(1-3). |
[13] | Shi J M,Tang C W.Anthracene derivatives for stable blue-emitting organic electroluminescence devices[J].Appl.Phys.Lett.,2002,80(17):3201(1-3). |
- 下载量()
- 访问量()
- 您的评分:
-
10%
-
20%
-
30%
-
40%
-
50%