Department of Chemical Engineering and Center for Advanced Soft Electronics , Pohang University of Science and Technology , 77 Cheongam-Ro , Nam-gu, Pohang 37673 , Korea.
SKKU Advanced Institute of Nanotechnology and Department of Nano Engineering , Sungkyunkwan University (SKKU) , Suwon 16419 , Korea.
ACS Appl Mater Interfaces. 2019 Dec 18;11(50):47153-47161. doi: 10.1021/acsami.9b17044. Epub 2019 Dec 9.
Solution-processed organic semiconductor thin films with high charge carrier mobility are necessary for development of next-generation electronic applications, but the rapid processing speed demanded for the industrial-scale production of these thin films poses a challenge to control of their thin-film properties, such as crystallinity, morphology, and film-to-film uniformity. Here, we show a new solution coating method that is compatible with a roll-to-roll printing process at a rate of 2 mm s by using a gap-controllable wire bar, motion-programming strategy, and blended active inks. We demonstrate that the coating bar, the horizontal motion of which is repeatedly brought to an intermittent standstill, results in an improved vertically self-stratified structure and a high crystallinity for organic active inks comprising a semiconducting small molecule and a semiconducting polymer. Furthermore, organic transistors prepared by the developed method show superior hole mobility with high operational stability (hysteresis and kink-free transfer characteristics), high uniformity over a large area of a 4 in. wafer, good reproducibility, and superior electromechanical stabilities on a flexible plastic substrate. The bar-coating approach demonstrated here will be a step toward developing industrial-scale practical organic electronics applications.
需要具有高电荷载流子迁移率的溶液处理有机半导体薄膜来开发下一代电子应用,但这些薄膜的工业规模生产所需的快速处理速度对其薄膜性能(如结晶度、形态和膜对膜的均匀性)的控制提出了挑战。在这里,我们展示了一种新的溶液涂覆方法,该方法使用具有可调节间隙的线棒、运动编程策略和混合活性油墨,与卷对卷印刷工艺兼容,其处理速度可达 2 毫米/秒。我们证明,通过将涂布棒的水平运动反复间歇停止,可以改善由半导体小分子和半导体聚合物组成的有机活性油墨的垂直自分层结构和高结晶度。此外,通过所开发的方法制备的有机晶体管表现出优异的空穴迁移率和高操作稳定性(无迟滞和扭结的转移特性)、在 4 英寸晶圆大面积上的高均匀性、良好的重现性以及在柔性塑料衬底上的优异机电稳定性。这里展示的棒涂方法将是朝着开发工业规模实用有机电子应用迈出的一步。