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Thin-Film Growth and Patterning Techniques for Small Molecular Organic Compounds Used in Optoelectronic Device Applications

机译:光电器件应用中的小分子有机化合物的薄膜生长和图案化技术

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摘要

Rapid advances in research and development in organic electronics have resulted in many exciting discoveries and applications, including organic light-emitting devices for information display and illumination, solar cells, photodetectors, chemosensors, and logic. Organic optoelectronic materials are broadly classified as polymeric or small molecular. For the latter category, solvent-free deposition techniques are generally preferred to form well-defined interfaces and improve device performance. This article reviews several deposition and patterning methods for small molecular thin films and devices, including organic molecular beam deposition, vacuum thermal evaporation, organic vapor phase deposition, and organic vapor jet printing, and compares them to several other methods that have been proposed recently. We hope this review provides a compact but informative summary of the state of the art in organic device processing and addresses the various techniques' governing physical principles.
机译:有机电子学研究与开发的飞速发展导致了许多令人兴奋的发现和应用,包括用于信息显示和照明的有机发光器件,太阳能电池,光电探测器,化学传感器和逻辑。有机光电子材料大致分为聚合物或小分子。对于后一类,通常优选使用无溶剂沉积技术来形成轮廓分明的界面并改善器件性能。本文回顾了用于小分子薄膜和器件的几种沉积和构图方法,包括有机分子束沉积,真空热蒸发,有机气相沉积和有机蒸汽喷射印刷,并将它们与最近提出的其他几种方法进行了比较。我们希望这篇评论对有机设备处理技术的现状提供一个紧凑而有益的总结,并解决各种控制物理原理的技术。

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