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一种新型二胺类空穴传输材料和NPB的合成及表征
引用本文:房树清,钱家盛,杭德余,班全志,段陆萌.一种新型二胺类空穴传输材料和NPB的合成及表征[J].化学试剂,2020,42(2):211-215.
作者姓名:房树清  钱家盛  杭德余  班全志  段陆萌
作者单位:安徽大学化学化工学院,安徽合肥230601;北京燕化集联光电技术有限公司,北京 102422
基金项目:北京市房山区优秀人才培养资助青年骨干个人项目;北京市房山区优秀人才培养资助青年拔尖个人项目
摘    要:以N-苯基-1-萘胺和对溴碘苯为起始原料,经Buchwald-Hartwing偶联反应合成有机发光二极管空穴传输材料N,N′-二4-(1-萘基苯基氨基)苯基]-N,N′-二苯基-1,1′-联苯]-4,4′-二胺(2)。以1-溴化萘(1-溴萘)为初始原料与N,N′-二苯基联苯二胺经Buchwald-Hartwing偶联合成了N,N′-二(1-萘基)-N,N′-二苯基]-1,1′-联苯基)-4,4′-二胺(NPB)。利用~1HNMR、LC-MS等对产品结构进行表征。通过差示扫描量热仪(DSC)测得化合物2和NPB失重5%的温度分别为510℃和491℃,化合物2的玻璃化转变温度Tg为126℃,化合物2和NPB的升华温度分别为395℃和290℃,并通过UV-Vis紫外吸收光谱、荧光光谱研究了两种传输材料的光学性质。

关 键 词:空穴传输材料  OLED  N  N′-二苯基联苯二胺  NPB  升华温度

Synthesis and Characterization of Novel Diamine Hole Transport Material and NPB
FANG Shu-qing,QIAN Jia-sheng,HANG De-yu,BAN Quan-zhi,DUAN Lu-meng.Synthesis and Characterization of Novel Diamine Hole Transport Material and NPB[J].Chemical Reagents,2020,42(2):211-215.
Authors:FANG Shu-qing  QIAN Jia-sheng  HANG De-yu  BAN Quan-zhi  DUAN Lu-meng
Affiliation:(College of Chemistry and Chemical Engineering,Anhui University,Hefei 230601,China;Beijing Yanhua Jilian Optoelectronic Technology Co.,Ltd.,Beijing 102422,China)
Abstract:The organic light-emitting diode(OLED)hole transporting material N,N′-bis4-(1-nap-hthalenylphenylamino)phenyl]-N,N′-diphenyl-1,1′-biphenyl]-4,4′-diamine(2)was synthesized by a Buchwald-Hartwing coupling reaction using 1-naphthylaminobenzene and pbromoiodobenzene as starting materials.NPB was synthesized by coupling Buchwald-Hartwing with 1-bromonaphthalene as starting material and N,N′-diphenylbiphenyldiamine.Structure of compounds was confirmed by^1HNMR and LC-MS.The temperature at which 5%weight loss of compound 2 and NPB was measured by differential scanning calorimetry was 510℃and 491℃,respectively.The glass transition temperature Tg of compound 2 was 126℃and the sublimation temperature of compound 2 and NPB were 395℃and 290℃,respectively.The optical properties of the two hole transporting materials were investigated by UV-Vis ultraviolet absorption spectroscopy and fluorescence spectroscopy.
Keywords:hole transport material  OLED  N  N′-diphenylbiphenyldiamine  NPB  sublimation temperature
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