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Quinacridone-based pi-conjugated electronic materials

机译:基于喹ac啶酮的π共轭电子材料

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摘要

Organic electronic materials are a hot topic of both academic and industrial studies because of their wide range of applications in various fields, e.g. displays, lighting and solar cells. In the development process of electronic materials, quinacridone (QA) and its derivatives have attracted increasing attention due to their intriguing properties, such as intense fluorescence in the dispersed state, strong absorption in the visible-light region, good carrier-transporting properties, as well as high photo, thermal and electrochemical stability. To date, the applications of QAs as electronic materials have been extensively explored in organic light-emitting diodes (OLEDs), organic solar cells (OSCs) and organic field-effect transistors (OFETs). The continuously improved performance of the QA-based electronic devices enables QAs to be used as an important material system. To summarize the achievements and drawbacks of this class of electronic materials so as to promote their further development, we review the existing knowledge on the synthesis, device performance and structure-performance relationships of QA-based electronic materials.
机译:有机电子材料由于其在各个领域中的广泛应用而成为学术和工业研究的热门话题。显示器,照明和太阳能电池。在电子材料的开发过程中,喹ac啶酮(QA)及其衍生物因其令人着迷的特性而受到越来越多的关注,例如分散态的强烈荧光,可见光区域的强吸收,良好的载流子传输特性。以及高的光,热和电化学稳定性。迄今为止,QA作为电子材料的应用已在有机发光二极管(OLED),有机太阳能电池(OSC)和有机场效应晶体管(OFET)中得到了广泛的探索。基于QA的电子设备的性能不断提高,使得QA可以用作重要的材料系统。为了总结此类电子材料的成就和缺点,以促进其进一步发展,我们回顾了有关基于QA的电子材料的合成,器件性能和结构性能关系的现有知识。

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