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Contact printing of colloidal nanocrystal thin films for hybrid organic/quantum dot optoelectronic devices

机译:用于有机/量子点混合光电器件的胶体纳米晶体薄膜的接触印刷

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摘要

Novel thin film optoelectronic devices containing both inorganic colloidal semiconductor quantum dots (QDs) and organic semiconductor thin films have been widely investigated in recent years for a variety of applications. Here, we review one of the most versatile and successful methods developed to integrate these two dissimilar material classes into a functional multilayered device: contact printing of colloidal QD films. Experimental details regarding the contact printing process are outlined, and the key advantages of this QD deposition method over other commonly encountered techniques are discussed. The use of tapping mode atomic force microscopy (AFM) to effectively characterize QD film morphology both on an elastomeric stamp (before contact printing) and as-transferred to the organic semiconductor receiving film (after contact printing) is also described. Finally, we offer suggestions for future efforts directed toward the goal of rapid, continuous QD deposition over larger substrates for the advancement of hybrid optoelectronic thin film devices.
机译:近年来,已经广泛研究了同时包含无机胶体半导体量子点(QD)和有机半导体薄膜的新型薄膜光电器件。在这里,我们回顾了将这两种不同的材料类别集成到功能多层设备中而开发的最通用,最成功的方法之一:胶体QD膜的接触印刷。概述了有关接触印刷工艺的实验细节,并讨论了此QD沉积方法相对于其他常见技术的关键优势。还描述了使用敲击模式原子力显微镜(AFM)有效地表征弹性体印模(在接触印刷之前)和转移到有机半导体接收膜(在接触印刷之后)的QD膜形态。最后,我们为未来的工作提供了建议,以期在大型衬底上快速连续进行QD沉积,以促进混合光电薄膜器件的发展。

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