首页> 外文会议>Conference on Organic Light Emitting Materials and Devices >Synthesis and electroluminescent properties of poly(p-phenylene-vinylene)s with 3',3'-diheptyl-3,4-propylenedioxythiophene pendant group for light-emitting diode applications
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Synthesis and electroluminescent properties of poly(p-phenylene-vinylene)s with 3',3'-diheptyl-3,4-propylenedioxythiophene pendant group for light-emitting diode applications

机译:聚(对亚苯基 - 乙烯烯)S的合成与电致发光,3',3'-二戊四醇-3,4-丙二氧噻吩侧侧侧悬浮液用于发光二极管应用

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Using the Gilch polymerization method, we synthesized a new series of green electroluminescent polymer, poly[1,4-{2-(3,3'-diheptyl-3,4-propylenedioxythiophen-2-yl)}phenylenevinylene], poly(PDOT-PV), which is a series of fully conjugated poly(p-phenylenevinylene) derivatives with a propylenedioxythiophene (PDOT) moiety as a side-chain. We also synthesized copolymers, poly(PDOT-PV-co-m-SiPhPV), of poly(PDOT-PV) with poly[2-(3-dimethyldodecyl- silyphenyl)-1,4-phenylenevinylene], poly(m-SiPhPV), segments. The resulting polymers were highly soluble in common organic solvents and could be easily spin-coated onto an indium-tin oxide coated glass substrate to obtain high quality optical thin films. The weight-average molecular weight (Mw) and polydispersity of poly(PDOT-PV) were 22.0 ×104 and 5.3, respectively, and those of poly(PDOT-PV-co-m-SiPhPV) were in the range of (23.2-36.7) ×104 and 5.0-5.8, respectively. The stability of the resulting polymers is adequate for the fabrication of devices, and they provide longevity to devices because they have high glass transition temperatures (Tg). We fabricated polymer light-emitting diodes (PLEDs) in ITO/PEDOT/light-emitting polymer/cathode configurations using either double-layer LiF/Al or triple-layer Alq3/LiF/Al cathode structures. For PLEDs containing poly(PDOT-PV) and poly(PDOT-PV-co-m-SiPhPV), the performance was highest using triple-layer cathodes. The turn-on voltages of PDOT-based light-emitting polymers were in the range of 6.0-9.0 V, and the maximum brightness and luminance efficiency were 5127 cd/m2 at 18 V and 3.75 cd/A at 9 V.
机译:使用吉尔CH聚合方法,我们合成了一系列新的绿色电致发光聚合物,聚[1,4- {2-(3,3'-二戊四醇-3,4-丙基二氧噻吩-2-基二苯甲酸二苯甲酸苯甲酸苯甲酸苯甲酸苯乙烯],聚(PDOT -PV),其是一系列完全缀合的聚(对苯基乙烯基乙烯)衍生物,其具有丙二氧苯乙烯(PDOT)部分作为侧链。我们还合成了聚(PDOT-PV)的共聚物,聚(PDOT-PV)与聚(3-二甲基二甲基二苯基)-1,4-苯乙烯],聚(M-SIPHPV) ),细分。所得聚合物在普通的有机溶剂中得到高度溶于含量,并且可以容易地旋涂到氧化铟锡涂覆的玻璃基底上,以获得高质量的光学薄膜。聚(PDOT-PV)的重均分子量(MW)和多分散性分别为22.0×104和5.3,聚(PDOT-PV-CO-M-SIPHPV)的范围为(23.2- 36.7)×104和5.0-5.8分别。所得聚合物的稳定性足以用于制造装置,它们为器件提供寿命,因为它们具有高玻璃化转变温度(Tg)。我们使用双层LiF / Al或三层Alq3 / LiF / Al阴极结构制造ITO / PETOT /发光聚合物/阴极配置中的聚合物发光二极管(PLED)。对于含有聚(PDOT-PV)和聚(PDOT-PV-CO-M-SIPHPV)的PLED,使用三层阴极的性能最高。 PDOT基发光聚合物的导通电压在6.0-9.0V的范围内,最大亮度和亮度效率为5127cd / m 2,在18V和3.75 CD / A处为9 V.

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