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Direct Printing of Asymmetric Electrodes for Improving Charge Injection/Extraction in Organic Electronics

机译:直接印刷不对称电极,以改善有机电子电荷注射/提取

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摘要

Engineering the energy levels of organic conducting materials can be useful for developing high-performance organic field-effect transistors (OFETs), whose electrodes must be well controlled to facilitate easy charge carrier transport from the source to drain through an active channel. However, symmetric source and drain electrodes that have the same energy levels are inevitably unfavorable for either charge injection or charge extraction. In this study, asymmetric source and drain electrodes are simply prepared using the electrohydrodynamic (EHD)-jet printing technique after the careful work function engineering of organic conducting material composites. Two types of additives effectively tune the energy levels of poly(3,4-ethylenedioxythiophene) polystyrene sulfonate-based composites. These solutions are alternately patterned using the EHD-jet printing process, where the use of an electric field makes fine jet control that enables to directly print asymmetric electrodes. The asymmetric combination of EHD-printed electrodes helps in obtaining advanced charge transport properties in p-type and n-type OFETs, as well as their organic complementary inverters. This strategy is believed to provide useful guidelines for the facile patterning of asymmetric electrodes, enabling the desirable properties of charge injection and extraction to be achieved in organic electronic devices.
机译:工程有机导电材料的能量水平可用于开发高性能有机场效应晶体管(OFET),其电极必须良好地控制,以便于易于源自源电极通过有源通道排出。然而,对对称源和漏极具有相同的能量水平的漏极电极对于电荷注射或电荷提取不可避免地是不利的。在该研究中,在有机导电材料复合材料的仔细工作功能工程之后,简单地使用电液动力学(EHD)-JET印刷技术简单地制备不对称源和漏电极。两种类型的添加剂有效地调整聚(3,4-亚乙基氧基噻吩)聚苯乙烯磺酸酯基复合材料的能量水平。这些解决方案使用EHD喷射印刷过程交替地图案化,其中使用电场使得精细喷射控制能够直接打印不对称电极。 EHD印刷电极的不对称组合有助于获得p型和n型的高级电荷传输性能,以及它们的有机互补逆变器。据信该策略提供了不对称电极的嵌合图案化的有用指导,使得在有机电子器件中实现的电荷注入和提取的理想性能。

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