使用柔性钢笔直接书写有机半导体图案,结晶由前体薄膜调节。

IF 10.7 2区 材料科学 Q1 CHEMISTRY, PHYSICAL Small Methods Pub Date : 2024-07-25 DOI:10.1002/smtd.202400098
Bingyang Liu, Jialin Wang, Guoxin Zhang, Gengxin Du, Huihui Xia, Weiwei Deng, Xinyan Zhao
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引用次数: 0

摘要

采用半月板引导镀膜(MGC)方法制造的有机半导体(OSC)薄膜适用于具有成本效益的柔性电子产品。然而,由于成核和晶体生长过程受到溶剂蒸发、随机成核和流体流动不稳定性之间相互交织的相互作用的影响,用 MGC 方法获得结晶薄膜仍然具有挑战性。在此,我们设计了一种具有主动供墨功能的新型柔性钢笔,用于打印 OSC。这种直接书写方法允许柔性笔尖接触基底,通过消除传统 MGC 中的间隙来保持稳固的半月板。原位光学显微镜观察系统显示,前驱体薄膜对结晶以及咖啡环和树枝状物的形成起着关键作用。计算流体动力学模拟表明,笔的微观结构促进了延伸流动,有利于质量传输和晶体排列。柔性钢笔已成功打印出高度排列有序的小分子有机物(TIPS-五碳烯)的带状晶体和半导体聚合物(N2200)。基于柔性钢笔打印的有机场效应晶体管表现出高性能和强大的各向异性迁移率。此外,柔性钢笔还具有可扩展性,可印刷多行或大面积薄膜。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Using a Flexible Fountain Pen to Directly Write Organic Semiconductor Patterns with Crystallization Regulated by the Precursor Film.

Organic semiconductor (OSC) films fabricated by meniscus-guided coating (MGC) methods are suitable for cost-effective and flexible electronics. However, achieving crystalline thin films by MGC methods is still challenging because the nucleation and crystal growth processes are influenced by the intertwined interactions among solvent evaporation, stochastic nucleation, and the fluid flow instabilities. Herein, a novel flexible fountain pen with active ink supply is designed and used to print OSCs. This direct-write method allows the flexible pen tip to contact the substrate, maintaining a robust meniscus by eliminating the gap found in conventional MGCs. An in situ optical microscopy observation system shows that the precursor film plays a critical role on the crystallization and the formation of coffee rings and dendrites. The computational fluid dynamics simulations demonstrate that the microstructure of the pen promotes extensional flows, facilitating mass transport and crystal alignment. Highly-aligned ribbon-shaped crystals of a small organic molecule (TIPS-pentacene), as well as a semiconducting polymer (N2200) with highly-ordered orientations, have been successfully printed by the flexible fountain pen. Organic field-effect transistors based on the flexible pen printed OSCs exhibit high performances and strong anisotropic mobility. In addition, the flexible fountain pen is expandable for printing multiple lines or large-area films.

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来源期刊
Small Methods
Small Methods Materials Science-General Materials Science
CiteScore
17.40
自引率
1.60%
发文量
347
期刊介绍: Small Methods is a multidisciplinary journal that publishes groundbreaking research on methods relevant to nano- and microscale research. It welcomes contributions from the fields of materials science, biomedical science, chemistry, and physics, showcasing the latest advancements in experimental techniques. With a notable 2022 Impact Factor of 12.4 (Journal Citation Reports, Clarivate Analytics, 2023), Small Methods is recognized for its significant impact on the scientific community. The online ISSN for Small Methods is 2366-9608.
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