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用于发光二极管的含恶二唑侧基的高效聚对苯撑乙烯基类共聚物。

High-efficiency poly(p-phenylenevinylene)-based copolymers containing an oxadiazole pendant group for light-emitting diodes.

作者信息

Jin Sung-Ho, Kim Mock-Yeon, Kim Jin Young, Lee Kwanghee, Gal Yeong-Soon

机构信息

Department of Chemistry Education and Center for Plastic Information System, Pusan National University, Busan 609-735, Korea.

出版信息

J Am Chem Soc. 2004 Mar 3;126(8):2474-80. doi: 10.1021/ja036955+.

Abstract

A new series of high brightness and luminance efficient poly(p-phenylenevinylene) (PPV)-based electroluminescent (EL) polymers, poly[2-[4-[5-(4-(3,7-dimethyloctyloxy)phenyl)-1,3,4-oxadiazole-2-yl]phenyloxy]-1,4-phenylenevinylene] (Oxa-PPV), poly[2-[2-((3,7-dimethyloctyl)oxy)phenoxy]-1,4-phenylenevinylene] (DMOP-PPV), and their corresponding random copolymers, poly[[2-[4-[5-(4-(3,7-dimethyloctyloxy)phenyl)-1,3,4-oxadiazole-2-yl]phenyloxy]-1,4-phenylenevinylene]-co-[2-[2-((3,7-dimethyloctyl)oxy) phenoxy]-1,4-phenylenevinylene]] (Oxa-PPV-co-DMOP-PPV), with an electron-deficient 1,3,4-oxadiazole unit on the side groups, were synthesized through the Gilch polymerization method. The newly designed and synthesized asymmetric molecular structures of Oxa-PPV, DMOP-PPV, and Oxa-PPV-co-DMOP-PPV were completely soluble in common organic solvents, and defect-free optical thin film was easily spin-coated onto the indium tin oxide (ITO) substrate. Oxa-PPV shows a high glass transition temperature (T(g)), which might be an advantage for long time operation of polymer light-emitting diodes (PLEDs). Double-layer LEDs with an ITO/PEDOT/polymer/Al configuration were fabricated by using those polymers. Electrooptical properties and device performance could be adjusted by introducing the Oxa-PPV content in the copolymers. The emission colors could be tuned from green to yellowish-orange via intramolecular energy transfer. The improved device performance of Oxa-PPV over DMOP-PPV and Oxa-PPV-co-DMOP-PPV may be due to better electron injection and charge balance between holes and electrons and also efficient intramolecular energy transfer from 1,3,4-oxadiazole units to PPV backbones. The maximum brightness and the luminance efficiency of Oxa-PPV were up to 19395 cd/m(2) at 14 V and 21.1 cd/A at 5930 cd/m(2). The maximum luminance efficiency of Oxa-PPV is ranked the highest value among the PPV derivatives to date.

摘要

通过吉尔奇聚合方法合成了一系列基于聚对苯撑乙烯(PPV)的新型高亮度和高发光效率的电致发光(EL)聚合物,聚[2-[4-[5-(4-(3,7-二甲基辛氧基)phenyl)-1,3,4-恶二唑-2-yl]phenyloxy]-1,4-苯撑乙烯](Oxa-PPV)、聚[2-[2-((3,7-二甲基辛基)氧基)苯氧基]-1,4-苯撑乙烯](DMOP-PPV)及其相应的无规共聚物,聚[[2-[4-[5-(4-(3,7-二甲基辛氧基)phenyl)-1,3,4-恶二唑-2-yl]phenyloxy]-1,4-苯撑乙烯]-co-[2-[2-((3,7-二甲基辛基)氧基)苯氧基]-1,4-苯撑乙烯]](Oxa-PPV-co-DMOP-PPV),其侧基带有缺电子的1,3,4-恶二唑单元。新设计合成的Oxa-PPV、DMOP-PPV和Oxa-PPV-co-DMOP-PPV的不对称分子结构完全可溶于常见有机溶剂,并且可以轻松地旋涂在氧化铟锡(ITO)衬底上形成无缺陷的光学薄膜。Oxa-PPV显示出较高的玻璃化转变温度(T(g)),这对于聚合物发光二极管(PLED)的长时间运行可能是一个优势。使用这些聚合物制备了具有ITO/PEDOT/聚合物/Al结构的双层发光二极管。通过在共聚物中引入Oxa-PPV的含量可以调节电光性能和器件性能。发射颜色可以通过分子内能量转移从绿色调节到黄橙色。Oxa-PPV相对于DMOP-PPV和Oxa-PPV-co-DMOP-PPV器件性能的提高可能归因于更好的电子注入以及空穴和电子之间的电荷平衡,还有从1,3,4-恶二唑单元到PPV主链的高效分子内能量转移。Oxa-PPV在14 V时的最大亮度和在5930 cd/m(2)时的发光效率分别高达19395 cd/m(2)和21.1 cd/A。Oxa-PPV的最大发光效率是迄今为止PPV衍生物中的最高值。

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