化学学报 ›› 2005, Vol. 63 ›› Issue (7): 637-642. 上一篇    下一篇

研究论文

含铽三元共聚物的合成及其发光性能研究

凌启淡*,1,2,杨慕杰2,王文1,林美娟1,章文贡1   

  1. (1福建师范大学高分子研究所 福州 350007)
    (2浙江大学高分子系 杭州 310027)
  • 投稿日期:2004-06-17 修回日期:2004-12-02 发布日期:2010-12-10
  • 通讯作者: 凌启淡

Synthesis and Luminescent Properties of Tri-block Copolymers Containing Terbium Complex

LING Qi-Dan*,1,2, YANG Mu-Jie2, WANG Wen1, LIN Mei-Juan1, ZHANG Wen-Gong1   

  1. (1 Institute of Polymer Science, Fujian Normal University, Fuzhou 350007)
    (2 Department of Polymer Science, Zhejiang University, Hangzhou 310027)
  • Received:2004-06-17 Revised:2004-12-02 Published:2010-12-10
  • Contact: LING Qi-Dan

报道了新型的可平衡电荷(空穴与电子)传输的稀土铽-聚合物发光材料的合成, 将稀土铽配合物单体与乙烯基咔唑、甲基丙烯酸甲酯共聚制得含咔唑和稀土铽配合物的HTL-EML-ETL三功能合一的聚合物, 通过FT-IR, GPC, NMR及元素分析对其结构进行表征, 并研究了这类材料的光致及电致发光性能. 在含铽三元共聚物的薄膜荧光中, 来自咔唑基的荧光出现“固态猝灭”, 而来自稀土铽离子的荧光则明显加强, 这是由于二者的失活机制不同引起的. 以含铽三元共聚物制作的单层器件主要发射铽离子的特征荧光.

关键词: 稀土铽, 配合物, 共聚物, 光致发光, 电致发光

This paper reported an effective synthesis of novel copolymers containing terbium complexes by free radical copolymerization of 9-vinylcarbazole, methyl methacrylate and terbium-methacrylate complex in DMF with AIBN as initiator. The resulting copolymers are soluble and can be cast into transparent films with good mechanical flexibility. The structure and composition of the copolymers were confirmed by FT-IR, gel permeation chromatography, NMR and elemental analysis. These copolymers have the Mw value of 20000~50000 and exhibit relatively broad polydispersity index as determined by GPC. The photoluminescent and electroluminescent properties of the copolymers containing terbium complex were studied in solid state as a thin film and a single layer polymer light-emitting diode (PLED). The device exhibited characteristic sharp green electroluminescence when forward bias was applied. The turn-on voltage is about 15 V. A maximum brightness of 16 cd/m2 with a luminous efficiency of about 0.024 lm/W was achieved from this single-layer PLED based on the multi-functional copolymer P1. EL spectra of the devices showed that the emissions were mainly from the corresponding lanthanide-complex units, instead of carbazole groups of the copolymers. It is suggested that the carbazole groups in P1 serve as hole-transport material while electron transfer may occur through the lanthanide-containing moieties of the same copolymer.

Key words: terbium, complex, copolymer, photoluminescence, electroluminescence