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Multi-colour organic light-emitting displays by solution processing

机译:通过溶液处理的多色有机发光显示器

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Organic light-emitting diodes (OLEDs) show promise for applications as high-quality self-emissive displays for portable devices such as cellular phones and personal organizers(1-4). Although monochrome operation is sufficient for some applications, the extension to multi-colour devices-such as RGB (red, green, blue) matrix displays-could greatly enhance their technological impact. Multi-colour OLEDs have been successfully fabricated by vacuum deposition of small electroluminescent molecules, but solution processing of larger molecules (electroluminescent polymers) would result in a cheaper and simpler manufacturing process. However, it has proved difficult to combine the solution processing approach with the high-resolution patterning techniques required to produce a pixelated display. Recent attempts have focused on the modification of standard printing techniques, such as screen printing(5-7) and ink jetting(8), but those still have technical drawbacks. Here we report a class of electroluminescent polymers that can be patterned in a way similar to standard photoresist materials-soluble polymers with oxetane sidegroups that can be crosslinked photochemically to produce insoluble polymer networks in desired areas. The resolution of the process is sufficient to fabricate pixelated matrix displays. Consecutive deposition of polymers that are luminescent in each of the three RGB colours yielded a device with efficiencies comparable to state-of-the-art OLEDs and even slightly reduced onset voltages. [References: 25]
机译:有机发光二极管(OLED)有望作为移动电话和个人管理器等便携式设备的高质量自发光显示器应用(1-4)。尽管单色操作对于某些应用程序已经足够,但是扩展到诸如RGB(红色,绿色,蓝色)矩阵显示器之类的多色设备可以极大地增强其技术影响力。已经通过真空沉积小的电致发光分子成功制造了多色OLED,但是较大分子(电致发光聚合物)的溶液处理将导致更便宜和更简单的制造过程。然而,事实证明很难将解决方案处理方法与产生像素化显示器所需的高分辨率图案化技术相结合。最近的尝试集中在标准印刷技术的修改上,例如丝网印刷(5-7)和喷墨(8),但是这些仍然存在技术缺陷。在这里,我们报告了一类电致发光聚合物,可以按照与标准光阻材料可溶的聚合物相似的方式进行构图,该聚合物具有氧杂环丁烷侧基,可以光化学交联以在所需区域产生不溶性聚合物网络。该过程的分辨率足以制造像素化矩阵显示器。连续沉积三种RGB颜色中的每一种均发光的聚合物,产生了一种器件,其效率可与最新的OLED媲美,甚至启动电压略有降低。 [参考:25]

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