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Nanoscale Thickness and Roughness Control of Gravure Printed MEH-PPV Layer by Solvent Printing for Organic Light Emitting Diode

机译:溶剂印刷有机发光二极管凹版印刷MEH-PPV层的纳米级厚度和粗糙度控制

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In this work, a nanoscale thick organic light emitting MEH-PPV (poly[2-methoxy-5-(2-ethylhexyloxy)-1,4-phenylenevinylene]layer) was realized by gravure printing technology and its roughness was controlled by the solvent printing process. Also, an organic light emitting diode (OLED) was successfully fabricated by the gravure printing of MEH-PPV layers with surface treatments of solvent printing. There is strong demand for high throughput and large area processing technology for the commercialization of OLEDs and the gravure printing process is a good candidate. We applied gravure printing process technology to OLED fabrication in this work. We controlled the thickness of the organic layers by the multi-printing technique. To control the roughness of the MEH-PPV organic layer, solvent printing was proposed in this work with various solvent mixture of chloroform, chlorobenzene and 1,2-dichlorobenzene on the top of the gravure printed MEH-PPV layers and a significant reduction in roughness was achieved. We were able to achieve a 51 nm thick and 3.7 nm rough MEH-PPV layer with the gravure printing process and subsequent solvent printing treatment and an OLED was fabricated using the gravure printed organic layers. An improvement of the brightness and efficiency was observed due to the improved roughness of the organic layers.
机译:在这项工作中,通过凹版印刷技术实现了纳米级厚有机发光MEH-PPV(聚[2-甲氧基-5-(2-乙基己氧基)-1,4-亚苯基亚乙烯基]层),其粗糙度由溶剂控制印刷过程。此外,通过对MEH-PPV层进行凹版印刷并采用溶剂印刷的表面处理,成功制造了有机发光二极管(OLED)。对于OLED的商业化,对高通量和大面积处理技术有强烈的需求,并且凹版印刷工艺是很好的候选者。在这项工作中,我们将凹版印刷工艺技术应用于OLED的制造。我们通过多重印刷技术控制了有机层的厚度。为了控制MEH-PPV有机层的粗糙度,在这项工作中提出了溶剂印刷,在凹版印刷的MEH-PPV层的顶部使用氯仿,氯苯和1,2-二氯苯的各种溶剂混合物,显着降低了粗糙度已实现。通过凹版印刷工艺和随后的溶剂印刷处理,我们能够获得51 nm厚和3.7 nm的粗糙MEH-PPV层,并使用凹版印刷的有机层制造了OLED。由于有机层的改善的粗糙度,观察到亮度和效率的改善。

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