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Graphene and mobile ions: The key to all-plastic, solution-processed light-emitting devices

机译:石墨烯和移动离子:全塑料,溶液处理的发光器件的关键

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The emerging field of "organic" or "plastic" electronics has brought low-voltage, ultrathin, and energy-efficient lighting and displays to market as organic light-emitting diode (OLED) televisions and displays in cameras and mobile phones. Despite using carbon-based materials as the light-emitting layer, previous efficient organic electronic light-emitting devices have required at least one metal electrode. Here, we utilize chemically derived graphene for the transparent cathode in an all-plastic sandwich-structure device, similar to an OLED, called a light-emitting electrochemical cell (LEC). Using a screen-printable conducting polymer as a partially transparent anode and a micrometer-thick active layer solution-deposited from a blend of a light-emitting polymer and a polymer electrolyte, we demonstrate a light-emitting device based solely on solution-processable carbon-based materials. Our results demonstrate that low-voltage, inexpensive, and efficient light-emitting devices can be made without using metals. In other words, electronics can truly be "organic".
机译:新兴的“有机”或“塑料”电子产品将低压,超薄和高能效的照明设备和显示器作为有机发光二极管(OLED)电视以及照相机和手机中的显示器推向市场。尽管使用碳基材料作为发光层,但是现有的有效有机电子发光器件需要至少一个金属电极。在这里,我们将化学衍生的石墨烯用于类似于OLED的全塑料夹心结构器件中的透明阴极,这种器件被称为发光电化学电池(LEC)。使用可丝网印刷的导电聚合物作为部分透明的阳极,以及从发光聚合物和聚合物电解质的混合物中沉积的微米级活性层溶液,我们演示了一种仅基于溶液可加工碳的发光器件基材料。我们的结果表明,可以在不使用金属的情况下制造低电压,廉价且高效的发光器件。换句话说,电子学可以真正地是“有机的”。

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