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首页> 外文期刊>Dyes and Pigments >Light emitting, segmented block copolymers containing distyrylbenzene blocks connected through alpha,omega-nonamethylenedioxy chain spacer for applications in polymer light emitting diodes
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Light emitting, segmented block copolymers containing distyrylbenzene blocks connected through alpha,omega-nonamethylenedioxy chain spacer for applications in polymer light emitting diodes

机译:含有含有α,ω-壬亚齐甲氧基链垫片连接的α-ω-壬羟二氧基链块,用于在聚合物发光二极管中的应用

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摘要

Two novel, soluble, semiconducting and light emitting segmented block copolymers, termed as NPPV1 and NPPV2 are synthesized using Horner-Emmons condensation polymerization. The chromophoric groups present in the copolymers are distyrylbenzene (DSB) units substituted with rigid, bulky cyclohexylmethoxy and cyclohexylethoxy groups. The rigid blocks are linked to flexible alpha,omega-nonamethylenedioxy chain spacer through ether linkage. The structural, morphological, thermal and photo-physical characteristics of the synthesized polymers are studied in detail. Noticeable differences in properties arising through the substituent effects are observed for both the polymers. Detailed studies bring out quite interesting structure-property relationships between the substituents introduced in the synthesized copolymers and their crystalline properties, thermal characteristics, optical properties, photoluminescence emission and fluorescence quantum yield. Polymer light emitting diodes (PLEDs) employing these segmented polymers as emissive layers are assembled and characterized to establish their suitability for lighting applications. Using the architecture, ITO/PEDOT:PSS/NPPV1/LiF-Al, polymer light emitting diodes (PLEDs) are assembled and as the first step of device characterization, their current-voltage characteristics are studied to establish the device behavior and find out the onset voltage. The emission characteristics of the devices are then studied using Ocean Optics USB 2000 spectrometer integrated to a computer using a dedicated program. The assembled devices show Schottky junction like behavior in the current-voltage characteristics and electroluminescence emission in the blue green region with appreciable intensity at the onset voltage of 8.8 V. It is highly desirable to develop polymers showing emission in the high frequency,blue region, using cost-effective synthesis mutes. The novel approaches adopted in the synthesis of the monomers and the corresponding copolymers to achieve the anticipated structure-property relationships suitable for the effective designing of polymer light emitting diodes are the highlights of the present work.
机译:采用Horner-Emmons缩聚法合成了两种新型的、可溶的、半导体的、发光的嵌段共聚物NPPV1和NPPV2。共聚物中的发色团为二苯乙烯基苯(DSB)单元,被刚性、大块的环己基甲氧基和环己基乙氧基取代。刚性块通过醚键连接到柔性α、ω-非亚甲基二氧基链间隔物。详细研究了合成聚合物的结构、形态、热物理和光物理特性。这两种聚合物的取代基效应产生的性能存在显著差异。详细的研究揭示了合成共聚物中引入的取代基与它们的结晶性质、热特性、光学性质、光致发光发射和荧光量子产率之间非常有趣的结构-性质关系。聚合物发光二极管(PLED)采用这些分段聚合物作为发射层进行组装和表征,以确定其适用于照明应用。利用该体系结构,组装了ITO/PEDOT:PSS/NPPV1/LiF-Al聚合物发光二极管(PLED),作为器件表征的第一步,研究了它们的电流-电压特性,以确定器件行为并找出起始电压。然后,使用集成到计算机的海洋光学USB 2000光谱仪,使用专用程序研究这些设备的发射特性。组装后的器件在电流-电压特性和蓝绿色区域的电致发光发射方面表现出类似肖特基结的行为,在8.8 V的起始电压下具有可观的强度。非常希望使用成本效益高的合成物来开发在高频、蓝色区域显示发射的聚合物。在单体和相应共聚物的合成中采用的新方法,以实现适用于有效设计聚合物发光二极管的预期结构-性能关系,是目前工作的重点。

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