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有机电致发光空穴传输材料的合成

Progress in Synthesis of Hole-Transport Materials for Organic Electroluminescent Devices
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摘要 有机电致发光中空穴传输材料对整个器件的性能有重要作用。系统地综述了空穴传输材料的研究现状,包括Ullmann偶合法、钯催化法、格氏反应、Suzuki偶合等。同时对合成的空穴传输材料的特性进行了简述。 Hole-transport materials paly a very important role in organic electroluminescent devices. The progress in synthesis of hole-transport materials is summarized in this paper. Including Ullmann coupling, Palladium-catalyzed Crosscoupling, Grignard reaction and Susuki coupling. Also, properties of the hole-transport materials were summarized.
机构地区 南昌大学化学系
出处 《化学世界》 CAS CSCD 北大核心 2007年第3期183-188,共6页 Chemical World
基金 南昌大学校基金
关键词 有机电致发光 空穴传输材料 合成方法 organic electroluminescent devices hole-transport materials synthesis
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参考文献37

  • 1Tang C W,Vanslyke S A.Appl Phys Lett.[J],1987,51(12):913-915.
  • 2Shirota Y,Kobata T,Noma N.Chem Lett.[J],1989,1145-1148.
  • 3Thelakkat M,Shmidt H W.Adv Mater[J],1998,(10):219-223.
  • 4Katsuma K,Shirota Y.Adv Mater[J],1998,(10):223-226.
  • 5Okumoto K,Shirota Y.Mat Sci Eng.[J],2001,B85:135-139.
  • 6Okumoto K,Kayaku K,Shirota Y,et al.Synth Met.[J],2000,111-112:473-476.
  • 7Shirota Y,Okumoto K,Indad H.Synth.Met.[J],2000,111-112:387-391.
  • 8邹立科,彭强,陈燕来,谢明贵.星状四芳胺类空穴传输材料的合成[J].化学研究与应用,2002,14(3):349-351. 被引量:3
  • 9杨玉惠,詹义强,丁焕军,徐健,肖斐.热稳定空穴传输材料的合成及其电致发光器件[J].发光学报,2003,24(6):583-587. 被引量:7
  • 10Tamaka H,Tokito S,Taga Y,et al.Chem Commun,[J],1996,2175-2176.

二级参考文献35

  • 1Adams R,G:lman.有机合成(中译本)合订本第一集[M].北京:科学出版社,.228.
  • 2陈燕来 朱卫国 等.-[J].发光学报(增刊),1998,19(12):17-19.
  • 3[2]Bach U, Cloedt K D, Spreitzer H, et al. Characterization of hole transport in a new class of spiro-linked oligotri-phenylamine compounds [J]. Adv. Mater., 2000, 12(14):1060-1063.
  • 4[3]Zhu Wenqing, Zheng Xinyou, Zhang Buxin, et al. C60 as a hole-injecting buffer layer for improvement in efficiency of organic electroluminescent devices [J]. Chin. J. Lumin. (发光学报), 2002, 23(3):269-272 (in Chinese).
  • 5[4]Van Slyke S A, Chen C H, Tang C W. Organic electroluminescent devices with improved stability [J]. Appl. Phys. Lett., 1996, 69(15):2160-2162.
  • 6[5]Lee S T, Wang Y M, Hou X Y. Interfacial electronic structures in an organic light-emitting diode [J]. Appl. Phys. Lett., 1999, 74(5):670-672.
  • 7[1]O'Brien D F, Burrows P E, Forrest S R, et al. Hole transporting materials with high glass transition temperatures for use in organic light-emitting devices [J]. Adv. Mater., 1998, 14(10):1108-1112.
  • 8Tang C W, Vanslyke S A. Organic electrolumineseent diodes [J].Appl Phys Lestt,1987, 51:913 -915.
  • 9Hosokawa C, Eida M, Matsuura M, et al. Display with fine pixels[J]. Syn Met, 1997,91:3-6.
  • 10Forrest S R, Antoniades J. The stackes OLED(SOLED) : a new type of organic device for achieving high-resolition full-color displays [J]. Syn Met, 1997,91:9-12.

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