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首页> 外文期刊>Thin Solid Films >Optoelectronic property enhancement of conjugated polymer in poly(9,9'-di-n-octylfluorenyl-2.7-diyl)/titania nanocomposites
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Optoelectronic property enhancement of conjugated polymer in poly(9,9'-di-n-octylfluorenyl-2.7-diyl)/titania nanocomposites

机译:聚(9,9'-二-正辛基芴基-2.7-二基)/二氧化钛纳米复合材料中共轭聚合物的光电性能增强

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摘要

Optoelectronic property enhancement of poly(9,9'-di-n-octylfluorenyl-2.7-diyl) (PFO) by different weight ratios of TiO_2 nanoparticles (NPs) is demonstrated. The solution blending method was used to prepare the PFO/TiO_2 nanocomposite. The microstructure of the composites was determined using X-ray diffraction while absorption and fluorescence spectra were recorded using UV-Vis and photoluminescence spectro-photometer respectively. X-ray diffractograms confirmed the formation of PFO/TiO_2 nanocomposites. The absorbance and fluorescence spectra of the PFO/TiO_2 nanocomposite were proportionately enhanced with the content of TiO_2 NPs. The recombination between electrons of TiO_2 and holes of PFO, through the interface of PFO/TiO_2 nanocomposites enhanced the luminescence properties. Besides, the energy gap, line width of phonon emission intensity and vibronic spacing decreased. The line width of the energy gap tails, the vibronic transition intensity and the S-factor increased resulting from higher aggregation of films as supported by field emission scanning electron microscope images. The observed turn on voltage of the indium tin oxide/(PFO/TiO_2)/Al organic light emitting diode device displayed a decreasing trend, suggesting an improvement on the performance of the device as the TiO_2 content was increased.
机译:证明了通过不同重量比的TiO_2纳米粒子(NPs)增强聚(9,9'-二-正辛基芴基-2.7-二基)(PFO)的光电性能。采用溶液共混法制备了PFO / TiO_2纳米复合材料。使用X射线衍射确定复合材料的微观结构,同时分别使用UV-Vis和光致发光分光光度计记录吸收和荧光光谱。 X射线衍射图证实了PFO / TiO_2纳米复合材料的形成。 PFO / TiO_2纳米复合材料的吸光度和荧光光谱随TiO_2 NPs含量的增加而成比例增加。 TiO_2电子与PFO空穴的复合通过PFO / TiO_2纳米复合材料的界面增强了发光性能。此外,能隙,声子发射强度的线宽和振动子间距减小。能隙尾部的线宽,电子跃迁强度和S因子增加,这是由于场发射扫描电子显微镜图像所支持的更高的薄膜聚集性所致。观察到的铟锡氧化物/(PFO / TiO_2)/ Al有机发光二极管器件的导通电压呈下降趋势,表明随着TiO_2含量的增加,器件的性能得到改善。

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