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Electrospray deposition of polymer thin films for organic light-emitting diodes

机译:电喷雾沉积用于有机发光二极管的聚合物薄膜

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摘要

Electrospray process was developed for organic layer deposition onto polymer organic light-emitting diode [PLED] devices in this work. An electrospray can be used to produce nanometer-scale thin films by electric repulsion of microscale fine droplets. PLED devices made by an electrospray process were compared with spin-coated ones. The PLED device fabricated by the electrospray process showed maximum current efficiency of 24 cd/A, which was comparable with that of the spin-coating process. The electrospray process required a higher concentration of hole and electron transport materials in the inks than spin-coating processes to achieve PLED maximum performance. Photoluminescence [PL] at 407 nm was observed using electrosprayed poly(N-vinyl carbazole) films, whereas a peak at 410 nm was observed with the spin-coated ones. Similar difference in peak position was observed between aromatic and nonaromatic solvents in the spin-coating process. PLED devices made by the electrospray process showed lower current density than that of spin-coated ones. The PL peak shift and reduced current of electrosprayed films can therefore be attributed to the conformation of the polymer.
机译:在这项工作中,开发了用于有机层沉积到聚合物有机发光二极管[PLED]器件上的电喷雾工艺。电喷雾可用于通过电排斥微细小液滴来生产纳米级薄膜。将通过电喷雾工艺制造的PLED器件与旋涂的器件进行了比较。通过电喷雾工艺制造的PLED器件的最大电流效率为24 cd / A,与旋涂工艺相当。为了实现PLED的最佳性能,电喷工艺需要比旋涂工艺更高的油墨中空穴和电子传输材料的浓度。使用电喷涂的聚(N-乙烯基咔唑)膜观察到407 nm的光致发光[PL],而旋涂膜观察到410 nm的峰。在旋涂过程中,在芳族和非芳族溶剂之间观察到相似的峰位置差异。通过电喷雾工艺制造的PLED器件显示出比旋涂的更低的电流密度。因此,电喷雾膜的PL峰位移和电流减小可归因于聚合物的构象。

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