Kant Chandra, Shukla Atul, McGregor Sarah K M, Lo Shih-Chun, Namdas Ebinazar B, Katiyar Monica
Materials Science and Engineering Department, Indian Institute of Technology Kanpur, Kanpur, India.
National Centre for Flexible Electronics, Indian Institute of Technology Kanpur, Kanpur, India.
Nat Commun. 2023 Nov 9;14(1):7220. doi: 10.1038/s41467-023-43014-7.
This work demonstrates successful large area inkjet printing of a thermally activated delayed fluorescence (TADF) material as the emitting layer of organic light-emitting diodes (OLEDs). TADF materials enable efficient light emission without relying on heavy metals such as platinum or iridium. However, low-cost manufacturing of large-scale TADF OLEDs has been restricted due to their incompatibility with solution processing techniques. In this study, we develop ink formulation for a TADF material and show successful ink jet printing of intricate patterns over a large area (6400 mm) without the use of any lithography. The stable ink is successfully achieved using a non-chlorinated binary solvent mixture for a solution processable TADF material, 3-(9,9-dimethylacridin-10(9H)-yl)-9H-xanthen-9-one dispersed in 4,4'-bis-(N-carbazolyl)-1,1'-biphenyl host. Using this ink, large area ink jet printed OLEDs with performance comparable to the control spin coated OLEDs are successfully achieved. In this work, we also show the impact of ink viscosity, density, and surface tension on the droplet formation and film quality as well as its potential for large-area roll-to-roll printing on a flexible substrate. The results represent a major step towards the use of TADF materials for large-area OLEDs without employing any lithography.
这项工作展示了热激活延迟荧光(TADF)材料作为有机发光二极管(OLED)发光层的大面积喷墨打印成功实现。TADF材料能够在不依赖铂或铱等重金属的情况下实现高效发光。然而,由于与溶液处理技术不兼容,大规模TADF OLED的低成本制造受到了限制。在本研究中,我们开发了一种TADF材料的油墨配方,并展示了在不使用任何光刻技术的情况下,在大面积(6400平方毫米)上成功喷墨打印复杂图案。对于一种可溶液加工的TADF材料3-(9,9-二甲基吖啶-10(9H)-基)-9H-呫吨-9-酮分散在4,4'-双-(N-咔唑基)-1,1'-联苯主体中,使用非氯化二元溶剂混合物成功实现了稳定的油墨。使用这种油墨,成功实现了大面积喷墨打印的OLED,其性能与对照旋涂OLED相当。在这项工作中,我们还展示了油墨粘度、密度和表面张力对液滴形成和薄膜质量的影响,以及其在柔性基板上进行大面积卷对卷打印的潜力。这些结果代表了在不采用任何光刻技术的情况下,将TADF材料用于大面积OLED的一个重要进展。