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通过水基双相浸涂技术制备高度结晶且均匀的共轭聚合物薄膜,该技术可最大程度减少用于晶体管应用的卤化溶剂的使用。

Highly crystalline and uniform conjugated polymer thin films by a water-based biphasic dip-coating technique minimizing the use of halogenated solvents for transistor applications.

作者信息

Kwon Eun Hye, Jang Young Jin, Kim Gun Woo, Kim Min, Park Yeong Don

机构信息

Department of Energy and Chemical Engineering, Incheon National University Incheon 22012 Republic of Korea

Innovation Center for Engineering, Incheon National University Incheon 22012 Republic of Korea.

出版信息

RSC Adv. 2019 Feb 21;9(11):6356-6362. doi: 10.1039/c8ra09231a. eCollection 2019 Feb 18.

Abstract

The commercialization of organic electronics will require minimizing the use of halogenated solvents used to solution-process organic semiconductors, which is a crucial step for large-area coating methods, such as the dip-coating method. Here, we report a novel biphasic dip-coating method which uses a water-based biphasic solution and produces a uniform, smooth, and crystalline conjugated polymer thin film in the presence of a solvent additive. We demonstrated that a solvent additive with a high boiling point and solubility parameter similar to that of the solution affected the solvent evaporation rate and improved the crystallinity of the dip-coated polymer thin film. The method used to add the solvent strongly influenced how the solvent additive diffused into the polymer solution, which affected the resulting film morphology. The crystallinity and morphology of the polymer films were correlated with the electrical characteristics, and the most crystalline film displayed a high hole field effect mobility of 0.0391 cm V s when processed from the solvent mixture without post-treatment. Our findings provide a direction for the development of reliable and promising organic thin film transistor technologies.

摘要

有机电子的商业化将需要尽量减少用于溶液加工有机半导体的卤化溶剂的使用,这对于诸如浸涂法等大面积涂布方法而言是关键的一步。在此,我们报道了一种新型的双相浸涂法,该方法使用水基双相溶液,并在溶剂添加剂存在的情况下制备出均匀、光滑且结晶的共轭聚合物薄膜。我们证明,具有高沸点且溶解度参数与溶液相似的溶剂添加剂会影响溶剂蒸发速率,并提高浸涂聚合物薄膜的结晶度。添加溶剂的方法强烈影响溶剂添加剂扩散到聚合物溶液中的方式,进而影响所得薄膜的形态。聚合物薄膜的结晶度和形态与电学特性相关,并且在未经后处理的情况下从溶剂混合物中加工得到的结晶度最高的薄膜显示出0.0391 cm² V⁻¹ s⁻¹的高空穴场效应迁移率。我们的研究结果为可靠且有前景的有机薄膜晶体管技术的发展提供了方向。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9431/9060937/fcc47dca746d/c8ra09231a-f1.jpg

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