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Inkjet Printing of Super Yellow: Ink Formulation Film Optimization OLEDs Fabrication and Transient Electroluminescence

机译:超级黄的喷墨印刷:油墨配方薄膜优化OLED的制造和瞬态电致发光

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摘要

Inkjet printing technique allows manufacturing low cost organic light emitting diodes (OLEDs) in ambient conditions. The above approach enables upscaling of the OLEDs fabrication process which, as a result, would become faster than conventionally used vacuum based processing techniques. In this work, we use the inkjet printing technique to investigate the formation of thin active layers of well-known light emitting polymer material: Super Yellow (poly(para-phenylene vinylene) copolymer). We develop the formulation of Super Yellow ink, containing non-chlorinated solvents and allowing stable jetting. Optimization of ink composition and printing resolution were performed, until good quality films suitable for OLEDs were obtained. Fabricated OLEDs have shown a remarkable characteristics of performance, similar to the OLEDs fabricated by means of spin coating technique. We checked that, the values of mobility of the charge carriers in the printed films, measured by transient electroluminescence, are similar to the values of mobility measured in spin coated films. Our contribution provides a complete framework for inkjet printing of high quality Super Yellow films for OLEDs. The description of this method can be used to obtain efficient printed OLEDs both in academic and in industrial settings.
机译:喷墨印刷技术允许在环境条件下制造低成本的有机发光二极管(OLED)。上述方法使得能够扩大OLED的制造工艺,其结果将比常规使用的基于真空的处理技术更快。在这项工作中,我们使用喷墨打印技术研究了著名的发光聚合物材料:超级黄(聚(对(亚苯基亚乙烯基)共聚物)的薄活性层的形成。我们开发了超级黄墨水配方,其中包含非氯化溶剂,可稳定喷射。进行油墨成分和印刷分辨率的优化,直到获得适合OLED的高质量薄膜为止。制备的OLED已经显示出显着的性能特征,类似于通过旋涂技术制备的OLED。我们检查了通过瞬态电致发光测量的印刷膜中电荷载流子的迁移率值与在旋涂膜中测得的迁移率值相似。我们的贡献为用于OLED的高质量Super Yellow薄膜的喷墨印刷提供了一个完整的框架。该方法的描述可用于在学术和工业环境中获得有效的印刷OLED。

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