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Multi-Color Polymeric OLEDs by Solution Processing

机译:通过溶液处理的多色聚合物OLED

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摘要

Organic light-emitting diodes (OLEDs) have recently attracted much interest among researchers as well as engineers as promising high quality self-emissive displays for all kinds of portable devices such as cellular phones, personal organizers, etc. While monochrome operation is sufficient for some applications, ultimately multi-color devices such as signs or even RGB (red, green, blue) matrix displays will be requested by the customer in the future. So far, this goal has been achieved with small-molecule devices fabricated by vacuum deposition. In contrast, electroluminescent (EL) polymers, which are commonly deposited by solution processing, seemed to be only poorly suited for this purpose owing to the lack of high-resolution patterning processes. Recent attempts, therefore, focus on the adaptation of common printing techniques such as screen printing and ink jetting, both having severe technical difficulties and drawbacks, such as limited resolution in the former and wetting issues in the latter case requiring extensive pre-treatment of the substrates. We demonstrate the use of a new class of EL polymers, which can be applied similar to a standard photoresist. Soluble polymers with oxetane sidegroups were crosslinked photochemically to yield insoluble polymer networks in the desired areas. The resolution of the process is sufficient to fabricate common pixelated matrix displays. Consecutive deposition of the three colors yielded a RGB device with efficiencies comparable to state-of-the-art EL polymers, even slightly reduced onset voltages, and improved efficiencies at high luminance levels. The improved thermal and morphological stability promises better performance in passive-matrix displays requiring high drive currents. The new method potentially allows efficient manufacturing of high-resolution multi-color polymer-based displays on large area using common lithography techniques.
机译:最近,有机发光二极管(OLED)吸引了研究人员和工程师的广泛兴趣,因为它们有望为各种便携式设备(例如手机,个人管理器等)提供高质量的自发光显示器。在未来的应用中,最终将要求客户使用诸如标志甚至是RGB(红色,绿色,蓝色)矩阵显示器之类的多色设备。到目前为止,通过真空沉积制造的小分子器件已经实现了这一目标。相反,由于缺乏高分辨率的图案化工艺,通常通过溶液处理沉积的电致发光(EL)聚合物似乎仅不太适合该目的。因此,最近的尝试集中于适应诸如丝网印刷和喷墨的普通印刷技术,这两种印刷技术都具有严重的技术困难和缺点,例如前者的分辨率有限而后者的润湿问题需要对它们进行广泛的预处理。基材。我们演示了新型EL聚合物的使用,可以像标准光刻胶一样使用。具有氧杂环丁烷基侧基的可溶性聚合物通过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普通的像素化矩阵显示器。连续沉积这三种颜色可以得到RGB器件,其效率可与最新的EL聚合物相媲美,甚至可以稍微降低起始电压,并在高亮度水平下可以提高效率。改进的热稳定性和形态稳定性保证了在需要高驱动电流的无源矩阵显示器中具有更好的性能。该新方法潜在地允许使用普通的光刻技术在大面积上高效地制造高分辨率的基于多色聚合物的显示器。

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