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界面工程:高性能有机场效应晶体管的有效途径。

Interface engineering: an effective approach toward high-performance organic field-effect transistors.

机构信息

Beijing National Laboratory for Molecular Sciences, Institute of Chemistry, Chinese Academy of Sciences, Beijing 100190, PR China.

出版信息

Acc Chem Res. 2009 Oct 20;42(10):1573-83. doi: 10.1021/ar9000873.

Abstract

By virtue of their excellent solution processibility and flexibility, organic field-effect transistors (OFETs) are considered outstanding candidates for application in low-cost, flexible electronics. Not only does the performance of OFETs depend on the molecular properties of the organic semiconductors involved, but it is also dramatically affected by the nature of the interfaces present. Therefore, interface engineering, a novel approach towards high-performance OFETs, has attracted considerable attention. In this Account, we focus on recent advances in the study of OFET interfaces--including electrode/organic layer interfaces, dielectric/organic layer interfaces, and organic/organic layer interfaces--that have resulted in improved device performance, enhanced stability, and the realization of organic light-emitting transistors. The electrode/organic layer interface, one of the most important interfaces in OFETs, usually determines the carrier injection characteristics. Focusing on OFETs with copper and silver electrodes, we describe effective modification approaches of the electrode/organic layer interfaces. Furthermore, the influence of electrode morphology on device performance is demonstrated. These results provide novel approaches towards high-performance, low-cost OFETs. The dielectric/organic layer interface is a vital interface that dominates carrier transport; modification of this interface therefore offers a general way to improve carrier transport accordingly. The dielectric layer also affects the device stability of OFETs. For example, high-performance pentacene OFETs with excellent stability are obtained by the selection of a dielectric layer with an appropriate surface energy. The organic/organic layer interface is a newly investigated topic in OFETs. Introduction of organic/organic layer interfaces, such as heterojunctions, can improve device performance and afford ambipolar OFETs. By designing laterally arranged heterojunctions made of organic field-effect materials and light-emitting materials, we realized both light emission and field effects simultaneously in a single OFET. The preceding decade has seen great progress in OFETs. Interface engineering provides a simple but effective approach toward creating high-performance OFETs and will continue to make essential contributions in the development of useful OFET-based devices. The exploration of novel interface engineering applications also merits further attention; the design of gas sensors through a more complete understanding of interface phenomena serves as just one example.

摘要

凭借其出色的溶液加工和柔韧性,有机场效应晶体管(OFET)被认为是应用于低成本、柔性电子产品的优秀候选者。OFET 的性能不仅取决于所涉及的有机半导体的分子特性,而且还受到存在的界面性质的显著影响。因此,界面工程,一种用于高性能 OFET 的新方法,引起了相当大的关注。在本专题介绍中,我们重点介绍了在研究 OFET 界面方面的最新进展,包括电极/有机层界面、介电/有机层界面和有机/有机层界面,这些进展导致了器件性能的提高、稳定性的增强以及有机发光晶体管的实现。OFET 中最重要的界面之一是电极/有机层界面,通常决定着载流子注入特性。我们专注于具有铜和银电极的 OFET,描述了有效修饰电极/有机层界面的方法。此外,还展示了电极形态对器件性能的影响。这些结果为高性能、低成本 OFET 提供了新的方法。介电/有机层界面是一个至关重要的界面,主导着载流子输运;因此,修饰这个界面是提高载流子输运的通用方法。介电层还会影响 OFET 的器件稳定性。例如,通过选择具有适当表面能的介电层,获得了具有出色稳定性的高性能并五苯 OFET。有机/有机层界面是 OFET 中一个新的研究课题。引入有机/有机层界面,例如异质结,可以改善器件性能并提供双极性 OFET。通过设计由有机场效应材料和发光材料组成的横向排列的异质结,我们在单个 OFET 中同时实现了发光和场效应。在过去的十年中,OFET 取得了巨大的进展。界面工程为创造高性能 OFET 提供了一种简单而有效的方法,并将继续为开发有用的基于 OFET 的器件做出重要贡献。进一步关注新型界面工程应用的探索也是值得的;通过更全面地了解界面现象来设计气体传感器就是一个例子。

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