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Material and Interface Engineering for Highly Efficient Polymer Light Emitting Diodes

机译:高效聚合物发光二极管的材料与界面工程

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Polymer light-emitting diodes (PLEDs) have great potential to compete with LCD displays that are currently used for computer and television screens. The efficiency and stability of PLEDs still need to be improved in order to fully realize the advantages of low cost and ease of fabrication provided by organic materials. Our effort in improving the PLED's performance have been focused on two parallel approaches: 1) Modify the interface between polymer and the charge-injection electrodes for more efficient device structures; 2) Enhance the efficiency of PLEDs through the development of new conjugated materials with balanced charge-transporting properties. In this paper, we review our recent progress on the interface engineering between polymer and electrodes to optimize charge-injection, -transport, and -recombination in PLEDs, as well as on the material engineering to tune the emission color, electron affinity, and charge mobility.
机译:聚合物发光二极管(PLEDS)具有与当前用于计算机和电视屏幕的LCD显示器竞争的潜力很大。 普遍的效率和稳定性仍然需要改善,以充分实现有机材料提供的低成本和易于制造的优点。 我们在改善PLED的性能方面的努力集中在两种平行方法:1)改变聚合物和电荷注入电极之间的界面,以获得更有效的装置结构; 2)通过开发具有平衡电荷运输性能的新共轭材料来增强镀层的效率。 在本文中,我们回顾了聚合物和电极之间的界面工程的最新进展,以优化电荷注入, - 在PLED中的电荷,以及对材料工程来调整发光颜色,电子亲和力和充电。 移动性。

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