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首页> 外文期刊>Advanced Functional Materials >A green polymeric light-emitting diode material: Poly(9,9-dioctylfluorene-alt-thiophene) end-capped with gold nanoparticles
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A green polymeric light-emitting diode material: Poly(9,9-dioctylfluorene-alt-thiophene) end-capped with gold nanoparticles

机译:一种绿色的聚合物发光二极管材料:聚(9,9-二辛基芴-alt-噻吩)端接有金纳米颗粒

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Poly (9,9-dioctylfluorene-alt-thiophene copolymer (PDOFT) is functionalized with thiol and end-capped with in-situ-reduced gold nanoparticles (AuNPs). The molecular structure of the resulting material (PDOFT-Au) is corroborated by H-1 and C-13 NMR spectroscopy, and direct evidence for the binding between the PDOFT-bis-4-thiol and gold nanoparticles is provided from X-ray photoelectron spectroscopy. PDOFT-Au is not only soluble in common organic solvents, but also has a broad range of thermal stability, up to 414 degrees C. The photoluminescence and electroluminescence spectra show that excitation of PDOFT is virtually unaffected by the end-capping with gold nanoparticles. However, atomic force microscopy shows that the root-mean-square roughness of the PDOFT-Au film is nearly ten times higher than that of the PDOFT film, resulting in an increased interfacial area between the film and the deposited cathode in a PDOFT-Au device. This increased interfacial area, together with the photo-oxidation-suppressing and hole-blocking characteristics of AuNPs, significantly enhances the electron injection, lowers the threshold voltage, and increases the electroluminescence (10521 cd m(-2)) and photometric efficiency (1.986 cd A(-1)) of the PDOFT-Au device by nearly an order of magnitude. These increases in electroluminescence and photometric efficiency would be much lower if AuNPs were blended into-rather than capped onto-the copolymer. The Commission International de L'Eclairage color coordinates of PDOFT-Au (0.237,0.655) are very close to the standard green demanded by the National Television System Committee, making PDOFT-Au an excellent candidate for a green-light-emitting material.
机译:聚(9,9-二辛基芴-alt-噻吩共聚物(PDOFT)用硫醇官能化,并用原位还原金纳米颗粒(AuNPs)封端,由此证实了所得材料(PDOFT-Au)的分子结构X射线光电子能谱提供了H-1和C-13 NMR光谱,以及PDOFT-bis-4-巯基与金纳米粒子之间结合的直接证据,PDOFT-Au不仅可溶于常见的有机溶剂,而且可溶于发光光谱和电致发光光谱表明,PDOFT的激发实际上不受金纳米颗粒的封端的影响,但是原子力显微镜显示,均方根PDOFT-Au膜的粗糙度比PDOFT膜的粗糙度高将近十倍,导致PDOFT-Au器件中膜与沉积阴极之间的界面面积增加。 AuNPs的抑制和空穴阻塞特性,显着增强电子注入,降低阈值电压,并增加PDOFT的电致发光(10521 cd m(-2))和光度效率(1.986 cd A(-1)) -Au装置将近一个数量级。如果将AuNP掺入而不是封端到共聚物中,则电致发光和光度学效率的增加将低得多。 PDOFT-Au的国际照明委员会色坐标(0.237,0.655)非常接近国家电视系统委员会要求的标准绿色,使PDOFT-Au成为绿色发光材料的绝佳候选者。

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