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Interface Engineering for Organic Electronics

机译:有机电子接口工程

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摘要

The field of organic electronics has been developed vastly in the past two decades due to its promise for low cost, lightweight, mechanical flexibility, versatility of chemical design and synthesis, and ease of processing. The performance and lifetime of these devices, such as organic light-emitting diodes (OLEDs), photovoltaics (OPVs), and field-effect transistors (OFETs), are critically dependent on the properties of both active materials and their interfaces. Interfacial properties can be controlled ranging from simple wettability or adhesion between different materials to direct modifications of the electronic structure of the materials. In this Feature Article, the strategies of utilizing surfactant-modified cathodes, hole-transporting buffer layers, and self-assembled monolayer (SAM)-modified anodes are highlighted. In addition to enabling the production of high-efficiency OLEDs, control of interfaces in both conventional and inverted polymer solar cells is shown to enhance their efficiency and stability; and the tailoring of source-drain electrode-semiconductor interfaces, dielectric-semiconductor interfaces, and ultrathin dielectrics is shown to allow for high-performance OFETs.
机译:在过去的二十年中,有机电子领域得到了广泛的发展,因为它具有低成本,轻便,机械柔韧性,化学设计和合成的多功能性以及易于加工的前景。这些设备(例如有机发光二极管(OLED),光伏(OPV)和场效应晶体管(OFET))的性能和寿命在很大程度上取决于活性材料及其界面的特性。可以控制界面性质,范围从简单的润湿性或不同材料之间的粘合性到直接改变材料的电子结构。在这篇专题文章中,重点介绍了利用表面活性剂修饰的阴极,空穴传输缓冲层和自组装单层(SAM)修饰的阳极的策略。除了能够生产高效率的OLED外,传统和倒置聚合物太阳能电池的界面控制也显示出可以提高其效率和稳定性。并显示了定制的源漏电极-半导体接口,电介质-半导体接口和超薄电介质可以实现高性能的OFET。

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  • 来源
    《Advanced Functional Materials》 |2010年第9期|P.1371-1388|共18页
  • 作者单位

    Department of Materials Science and Engineering University of Washington Seattle, WA 98195 (USA);

    rnDepartment of Materials Science and Engineering University of Washington Seattle, WA 98195 (USA);

    rnDepartment of Materials Science and Engineering University of Washington Seattle, WA 98195 (USA) Institute of Polymer Optoelectronic Materials and Devices College of Materials Science and Engineering South China University of Technology Guangzhou, 510640 (P. R. China);

    rnDepartment of Materials Science and Engineering University of Washington Seattle, WA 98195 (USA);

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