欢迎登录材料期刊网

材料期刊网

高级检索

有机磷光电致发光可以同时利用单重态和三重态的激子,理论上可使器件的内量子效率达到100 %而在近几年倍受关注.文章从发光机理、基质材料、掺杂剂材料和载流子阻挡材料的特征以及发白光的磷光电致发光器件几个方面扼要阐述了该领域的研究进展.

参考文献

[1] 李文连.有机磷光及其有机EL的量子效率的提高[J].液晶与显示,2000,15(1):67-70.
[2] 李文连.有机电致发光的效率[J].液晶与显示,2001,16(2):120-123.
[3] Baldo M A,O′Brien D F, You Y, et al. Highly efficient phosphorescent emission from organic electroluminescent devices [J].Nature,1998,395(10):151-154.
[4] Lee C L, Lee K B, Kim J J, et al. Polymer phosphorescent light-emitting diodes doped with tris(2-phenylpyridine)iridium as a triplet emitter [J]. Appl. Phys. Lett., 2000,77(15):2280-2282.
[5] Adachi C, Baldo M A, Thompson M E, et al. Nearly 100 % internal phosphorescence efficiency in an organic light emitting device [J]. J . Appl. Phys., 2001,90(10):5048-5051.
[6] Gong X, Robinson M R, Ostrowski J C, et al. High-efficeency polymer-based electrophosphorescent devices [J].Advan.Mater., 2002,14(8):581-585.
[7] Masamichi L, Shizuo T. Highly efficient phosphorescene from organic light-emitting devices with an exciton-block layer [J]. Appl. Phys. Lett., 2001,79(2):156-158.
[8] Li F, Zhang M, Cheng G, et al. Highly efficient electrophosphorescence decices based on rhenium complexes [J]. Appl. Phys. Lett.,2004,84(1):148-150.
[9] Gong X, Ostrowski J C, Bazan G C, et al. Red electrophosphorescence from polymer doped with iridium complex [J]. Appl. Phys. Lett., 2002,81(20):3711-3713.
[10] O′Briena D F, Giebeler C, Fletcher R B, et al. Electrophosphoresence from a doped polymer light emitting diode [J]. Synth. Metals., 2001,116:379-383.
[11] Adachi C, Baldo M A, Forrest S R. High-efficiency organic electrophosphorescent device with tri(2-phenylpyridine)iridium doped into electron-transporting materials [J]. Appl. Phys. Lett.,2000,77(6):904-906.
[12] O′Brien D F, Baldo M A, Thompson M E, et al. Improved energy transfer in electrophosphorescent devices [J]. Appl. Phys. Lett., 1999,74(3):442-444.
[13] Li F, Cheng G,Zhao Y, et al. White- electrophosphorescence decices based on rhenium complexes [J]. Appl. Phys. Lett., 2003,83(23):4716-4718.
[14] Li F, Zhang M,Feng J, et al. Red electrophosphorescence decices based on rhenium complexes [J]. Appl. Phys. Lett., 2003,83(2):365-367.
[15] Tokito Shizuo , Lijima Toshiki, Suzuri Yoshiyuki, et al. Confinement of triplet energy on phosphorescent molecules highly-efficent organic blue-light-emitting devices[J]. Appl. Phys. Lett., 2003,83(3):569-571.
[16] Tokito S , Lijima T, Suzuri Y, et al. High-efficiency white phosphorescent organic light-emitting devices with greenish-blue and red-emitting layers [J]. Appl. Phys. Lett., 2003,83(12):2456-2458.
[17] Adachi C, Kwong R C, Peter D, et al. Endothermic energy transfer: A mechanism for generating very efficient high-energy phosphorescent emission in organic materials [J]. Appl. Phys. Lett., 2001,79(13):2082-2084.
[18] Chen F C,Yang Y ,Thompson M E, et al. High-performance polymer light-emitting diodes doped with a red phosphorescent iridium complex [J]. Appl. Phys. Lett.,2002,80(13):2308-2310.
[19] Zhu WG, Mo Y Q, Yuan M, et al. Highly efficient electrophosphorescent devices based on conjugated polymers doped with iridum complexes [J]. Appl. Phys. Lett., 2002,80(12):2045-2047.
[20] Shen F Z, Xia H, Zhang C B, et al. Spectral investigation for phosphorescent polymer light-emitting devices with doubly doped phosphorescent dyes [J]. Appl. Phys. Lett., 2004(1),84:55-57.
[21] Xia H, Zhang C B, Qiu S, et al. Highly efficient red phosphorescent based on ruthenium(II)-complex-doped semiconductive polymers [J]. Appl. Phys.Lett., 2004,84(2):290-292.
[22] Lamansky S, Kwong R C, Nugent M, et al. Molecularly doped polymer light emitting diodes utilizing phosphorescent Pt(II) and Ir(III) dopants [J].Organic Electronics, 2001,2:53-62.
[23] Chen F C, He G F,Yang Y. Triplet exciton confinement in phosphorescent polymer light-emitting diodes [J]. Appl. Phys. Lett., 2003,82(7):1006-1008.
[24] Chang S C, He G F,Chen F C, et al. Degradation mechanism of phosphorescent-dye-doped polymer light-emitting diodes [J]. Appl. Phys. Lett.,2001,79(13):2088-2090.
[25] Baldo M A, Thompson M E, Forest S R. High-efficiency fluorescent organic light-emitting devices using a phosphorescent sensitizer [J].Nature,2000,6771(403):750-753.
[26] Lamansky S, Djurovich P I, Feras A R, et al. Cyclometalated Ir complexes in polymer organic light-emitting devices [J]. J. Appl. Phys., 2002,92(3):1570-1575.
[27] Guo T F, Chang S C, Yang Y, et al. Highly efficient electrophophorescent polymer light-emitting devices. [J].Organic Electronics,2000,(1):15-20.
[28] Lane P A, Palilis L C, O′Brien D F, et al. Origin of electrophophorescence from a doped polymer light emitting diode [J].Phys.Rev., 2001,63(23):235206(1-8).
[29] Tokito S , Suzuki M ,Sato Fumio, et al. High-efficiency phosphorescent polymer light-emitting devices [J].Organic Electronics,2003,(4):105-111.
[30] Kawamura Y, Yanagida S, Forrest S R. Energy transfer in polymer electrophosphorescent light emitting devices with single and multiple doped luminescent layers [J]. J. Appl. Phys., 2002,92(1):87-93.
[31] Nakamura A, Tada T, Mizukami M, et al. Efficient electrophophorescent polymer light-emitting devices using a Cs/Al cathode [J]. Appl. Phys. Lett., 2004,84(1):130-132.
[32] Cocchi M, Fattori V, Virgili D, et al. Highly efficient organic electrophosphorescent light-emitting diodes with a reduced quantum efficiency roll off at larger current densities [J]. Appl. Phys. Lett.,2004,84(7):1052-1054.
[33] Joo H K, Lium M S, Jen A K Y, et al. Bright red-emitting electrophosphorescent device using osmium complex as a triplet emitter [J].Appl. Phys. Lett.,2003,83(4):776-778.
[34] Jiang X Z, Jen A K Y, Carlson B, et al. Red-emitting electroluminescent devices based on osmium-complexesdoped blend of polyvinylnaphthalene and 1,3,4-oxadiazole derivative [J]. Appl. Phys. Lett.,2003,81(17):3125-3127.
[35] Jiang X Z, Jen A K Y, Carlson B, et al. Red electrophosphorescence from osmium complexes [J]. Appl. Phys. Lett., 2002,80(5):713-715.
[36] Li Y Q, Wang Y, Zhang Y, et al. Carbonyl polypridyl Re(I) complexes as organic electroluminescent materials [J]. Synth. Metals., 1999:257-260.
[37] Ma Y G, Chao H Y, Wu Y, et al. A blue electroluminescent molecular device from a tetranucluear zinc(II) compound [Zn4O(AID)6](AID=7-azaindolate) [J]. Chem. Comun., 1998,(22):2491-2492.
[38] Ma Y,Wu Y A. Ligand-stabilized terameric zinc(II) cluster with high-efficiency from both singlet and triplet excited states for electroluminescent devices [J]. Advan.Mater.,2000,12(6):433-436.
[39] Ma Y G, Che C M, Chao H Y, et al. High luminescence gold(I) and copper(I) complexes with a triplet excited states for use in light-emitting diodes [J]. Advan.Mater.,1999,11(10):852-857.
[40] Ma Y G, Cha W H, Zhou X M, et al. Light-emitting diode device from a luminescent organocopper(I) compound [J]. New J. Chem., 1999,23(3):263-265.
[41] Jabbour G E, Wang J F, Peyghambarian N ,et al. High-efficiency organic electrophophorescent devices through balance of charge injection [J]. Appl. Phys. Lett., 2002,80(11):2026-2028.
[42] Fang J F, Ma D G. Efficient red organic light-emitting drvices based on a europium complex [J]. Appl. Phys. Lett., 2003,83(19):4041-4043.
[43] Yang K X, Gao W B, Liu S Y,et al. An efficient and bright organic white-light-emitting device [J]. Synth. Metals., 2002,132:43-47.
[44] Baldo M A, Brien D F, You Y, et al. Very high-efficiency green organic light-emitting based on electrophophorescent [J]. Appl. Phys. Lett., 1999,75(1):4-6.
[45] D′Andrade B W, Forrest S R, Chwang A B. Operational stability of electrophophorescent devices containing p and n doped transport layers [J]. Appl. Phys. Lett.,2003,83(19):3858-3860.
[46] Adamobich V I, Cordero S R, Cordero, et al. New charge-carrier blocking materials for high efficiency OLEDs [J].Organic Electronics, 2003,4:77-87.
[47] Adamovich V I, Jason B , Arnold T, et al. High efficiency single dopant white electrophosphorescent light emitting diodes [J].New J.Chem.,2002,26(9):1171-1178.
[48] D′Andrade B W, Brooks J, Forrest S R , et al. White light emission using triplet excimers in electrophosphorescent organic light-emitting devices [J].Advan.Mater.,2002,14(15):1032-1036.
[49] 陈志忠,秦志新,胡晓东,等.大功率白光LED的制备和表征[J].液晶与显示,2004,19(2):83-86.
[50] 张素梅,石家伟,李清.有机EL器件的研究及产品开发现状[J].液晶与显示,2004,19(1):37-41.
[51] D′Andrade B W, Thompson M E, Forrest S R, et al. Controlling exciton diffusion in multilayer white phosphorescent organic light emitting devices [J].Advan.Mater.,2002,14(2): 147-151.
上一张 下一张
上一张 下一张
计量
  • 下载量()
  • 访问量()
文章评分
  • 您的评分:
  • 1
    0%
  • 2
    0%
  • 3
    0%
  • 4
    0%
  • 5
    0%