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Orientation of Semiconducting Polymers via Swift Printing and Drawing Techniques for High Performance Organic Electronic Devices

机译:通过快速印刷和拉伸技术使高分子聚合物定向用于高性能有机电子器件

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Recent developments in the field of organic electronics are being triggered by various approaches aiming towards enhancing the charge transport in thin-films of processable organic semiconductors such as novel molecular design, synthesis and increasing their crystallinity and molecular orientation adopting various thin film fabrication techniques. However, intriguing challenges associated with serious health and environment hazards due to inevitable use of halogenated solvents are needed to be addressed amicably before the practical realization of organic electronic devices. In order to address this issue, thin film fabrication techniques like floating-film transfer and friction transfer have been utilized to demonstrate environment friendly and sustainable fabrication of large area thin-films possessing adequate uniformity without comprising the facile charge transport. Organic field effect transistors were fabricated using different regions of the large-area thin films (≥ 10 cm2) and by optimizing casting conditions, uniformity in the field effect mobility (µ) was demonstrated. Besides this, as compared to most commonly used spin coating, one order of magnitude enhancement in the µ was successfully achieved utilizing oriented thin films fabricated by our methods.
机译:各种旨在增强可加工有机半导体薄膜中电荷传输的方法(例如新颖的分子设计,合成以及采用各种薄膜制造技术来提高其结晶度和分子取向)触发了有机电子领域的最新发展。然而,在有机电子器件的实际实现之前,需要友好解决因不可避免地使用卤化溶剂而引起的与严重的健康和环境危害相关的有趣挑战。为了解决这个问题,已经使用诸如浮膜转移和摩擦转移的薄膜制造技术来证明具有足够的均匀性而又不包括容易的电荷传输的大面积薄膜的环境友好和可持续的制造。使用大面积薄膜(≥10 cm)的不同区域来制造有机场效应晶体管 2 ),并通过优化浇铸条件,证明了场效应迁移率(μ)的均匀性。除此之外,与最常用的旋涂相比,利用通过我们的方法制造的定向薄膜成功地将µ的数量级提高了一个。

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