标题: 含树枝状侧链取代基之聚(2,3-双苯基乙烯)共聚物之合成及其在高分子电激发光元件上之应用
Synthesis of Poly(2,3-diphenylphenylene vinylene) Derivatives Containing Dendritic Side Groups for the Application of PLED Devices
作者: 陈湘盈
Shiang-Ying Chen
许千树
Chain-Shu Hsu
应用化学系硕博士班
关键字: 树枝状取代基;聚(2,3-双苯基乙烯);高分子电激发光元件;Dendritic Side Group;Poly(2,3-diphenylphenylene vinylene);PLED
公开日期: 2004
摘要: 本研究中成功的合成出三种含树枝状取代基之单体,分别为G1-DPM, G2-DPM 与G3-DPM。且利用Gilch route聚合法,以过量t-BuOK提供硷性环境,与1,4-bis (bromomethyl)-2,5-dimethoxybenzene (DMe-M)及1,4-bis(bromomethyl)-2-phenyl-3-[p-(3,7-dimethyloctoxy) phenyl]benzene (OC10-DPM),进行共聚合反应合成出共聚合物P1~P6,其最大放射峰介于538~548 nm范围间,属于黄绿色发光材料。
而第二部分中,则以G3-DPM为主体,分别与1,4-bis(bromomethyl)-2-methoxy-5-(3,7-dimethyloctyl)benzene(MDMO-M)、1,4-bis(bromomethyl)-2,5-methoxy benzene(DMe-M)、1,4-bis (bromomethyl)-2-methoxy-5-(3-ethylhexyl) benzene(MEH-M)进行共聚合反应,得到共聚合物P7~P12,最大放射峰介于549~568 nm之间,属于黄绿光至黄光发光材料。由实验结果可知,于PPV主链中导入含树枝状侧链单体,可有效的减少材料由溶液态转变为薄膜态时萤光光谱红位移现象。而所合成之共聚物均具有相当高的分子量以及足够的热稳定性。
本研究亦制作了结构为ITO/PEDOT/Polymer/Ca(Al)之双层有机电激发光二极体元件,并探讨其发光特性。其中以P1为发光层之元件最大效率与亮度分别可达4.53 cd/A, 2114 cd/m2,此结果表示将适当的树枝状侧链取代基 (G3-DPM)导入PPV共轭系统中,可有效避免高分子链堆叠,进而提升元件效率。而以P7为发光层之元件最大亮度可达5068 cd/m2效率为0.64 cd/A,显示将G3-DPM与MDMO-M共聚以增加电洞传输能力,亦可有不错的亮度表现。
In this study, three kinds of dendron containing monomers, i.e., G1-DPM, G2-DPM and G3-DPM were synthesized. The monomers were copolymerized with 1,4-bis(bromomethyl)-2,5-dimethoxybenzene (DMe- M) and 1,4-bis(bromomethyl)-2-phenyl-3-[p-(3,7-dimethyloctoxy)phenyl] benzene (OC10-DPM) via Gilch route using excess t-BuOK as base to yield dendron-containing poly(2,3-diphenyl-1,4-phenylene vinylene) (DP-PPVs) derivatives P1~P6. Polymers P1~P6 emitted yellow-greenish light between 538 and 548 nm.
In the second part of this study, monomer G3-DPM was copolymerized with 1,4-bis(bromomethyl)-2-methoxy-5-(3,7-dimethyl octyl)benzene (MDMO-M), 1,4-bis(bromomethyl)-2,5-methoxybenzene (DMe-M), or 1,4-bis (bromomethyl)-2-methoxy-5-(3-ethylhexyl)benzene (MEH-M), to yield the dendron containing DP-PPV derivatives, P7~P12. Polymers P7~P12 exhibited yellow-greenish to yellow light from 549 to 568 nm. The results demonstrate that the incorporation of dendron groups into DP-PPV main chain could efficiently reduce the phenomenon of red-shift for these DP-PPV derivatives from solution to thin film state. All polymers synthesized in this study exhibited high molecular weights and excellent thermal stabilities.
The double layer polymer light-emitting diode (PLED) devices with the configuration of ITO/PEDOT/emitting polymer/Ca(Al) were fabricated. A high efficient PLED device which was fabricated by using P1 as the emitting polymer. Its maximum external quantum efficiency and brightness are 4.53 cd/A and 2114 cd/m2. The results show that introducing dendron groups into the DP-PPV main chains can avoid chain aggregation, and therefore improve the performance of the device. The best PLED device was fabricated by using P7 as the emitting layer. Its maximum brightness and external quantum efficiency of P7 can reach 5068 cd/m2 and 0.64 cd/A. The results above reveal that MDMO-M was incorporated in the polymer main chains, which enhances the hole mobility of polymer P7.
URI: http://140.113.39.130/cdrfb3/record/nctu/#GT009225575
http://hdl.handle.net/11536/76860
显示于类别:Thesis


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