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有机发光晶体管:材料、器件结构和工作原理。

Organic Light-Emitting Transistors: Materials, Device Configurations, and Operations.

机构信息

Department of Chemistry, School of Science & Collaborative Innovation Center of Chemical Science and Engineering (Tianjin), Tianjin University, Tianjin, 300072, P. R. China.

Beijing National Laboratory for Molecular Sciences, Key Laboratory of Organic Solids, Institute of Chemistry, Chinese Academy of Sciences, Beijing, 100190, China.

出版信息

Small. 2016 Mar 9;12(10):1252-94. doi: 10.1002/smll.201502546. Epub 2016 Feb 2.

Abstract

Organic light-emitting transistors (OLETs) represent an emerging class of organic optoelectronic devices, wherein the electrical switching capability of organic field-effect transistors (OFETs) and the light-generation capability of organic light-emitting diodes (OLEDs) are inherently incorporated in a single device. In contrast to conventional OFETs and OLEDs, the planar device geometry and the versatile multifunctional nature of OLETs not only endow them with numerous technological opportunities in the frontier fields of highly integrated organic electronics, but also render them ideal scientific scaffolds to address the fundamental physical events of organic semiconductors and devices. This review article summarizes the recent advancements on OLETs in light of materials, device configurations, operation conditions, etc. Diverse state-of-the-art protocols, including bulk heterojunction, layered heterojunction and laterally arranged heterojunction structures, as well as asymmetric source-drain electrodes, and innovative dielectric layers, which have been developed for the construction of qualified OLETs and for shedding new and deep light on the working principles of OLETs, are highlighted by addressing representative paradigms. This review intends to provide readers with a deeper understanding of the design of future OLETs.

摘要

有机发光晶体管(OLETs)代表了一类新兴的有机光电设备,其中有机场效应晶体管(OFETs)的电开关性能和有机发光二极管(OLEDs)的发光性能都内在地集成在单个设备中。与传统的 OFETs 和 OLEDs 相比,OLETs 的平面器件几何形状和多功能的特点不仅为高度集成的有机电子学的前沿领域提供了众多技术机会,而且还为解决有机半导体和器件的基本物理事件提供了理想的科学支架。

本文综述了 OLETs 在材料、器件结构、工作条件等方面的最新进展。通过介绍具有代表性的范例,突出了为构建合格的 OLETs 以及为深入了解 OLETs 的工作原理而开发的各种最先进的方法,包括体异质结、层异质结和横向排列的异质结结构以及非对称源漏电极和创新的介电层。

本文旨在为读者提供对未来 OLETs 设计的更深入理解。

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