Cho Hanchul, Lee Ho-Nyun, Jeong Yong-Cheol, Park Young Min, Kang Kyung-Tae, Cho Kwan Hyun
Precision Mechanical Process and Control R&D Group, Korea Institute of Industrial Technology, Sasang-gu, Busan 46938, Republic of Korea.
Surface Treatment Group, Korea Institute of Industrial Technology, Yeonsu-gu, Incheon 21999, Republic of Korea.
ACS Appl Mater Interfaces. 2020 Oct 7;12(40):45064-45072. doi: 10.1021/acsami.0c12749. Epub 2020 Sep 28.
The solution process and vacuum evaporation, both fabrication methods for conventional organic light-emitting diodes (OLEDs), are intrinsically restricted with regard to their ability to enhance pattern resolutions and film stability outcomes. Here, we introduce a novel approach of the solution process followed by intense pulsed light (IPL) evaporation for producing high-resolution line patterns of OLEDs. Through control of the wettability between the banks and microchannels via a mask-free selective surface treatment, we successfully deposited phosphorescent green and red inks only into the microchannels. Then, high-resolution patterns of an emitting layer (EML) layer were uniformly evaporated onto the device substrate using IPL evaporation. Ultimately, we fabricated green and red phosphorescent OLED devices with a high pixel density of a line-patterned EML with a width of 6 μm and a pitch of 13.6 μm. In addition, we demonstrated that the IPL-evaporated films have many advantages compared to those fabricated by the conventional solution process. We also showed that the IPL evaporation process can be less sensitive to problems related to the aggregation of organic molecules during a drying or annealing process. Hence, the device performance and lifetime of the IPL-evaporated OLEDs were enhanced compared to those of the spin-coated OLEDs.
溶液法和真空蒸发法这两种传统有机发光二极管(OLED)的制造方法,在提高图案分辨率和薄膜稳定性方面存在内在限制。在此,我们介绍一种新方法,即先采用溶液法,再通过强脉冲光(IPL)蒸发来制备高分辨率的OLED线条图案。通过无掩膜选择性表面处理控制堤岸和微通道之间的润湿性,我们成功地仅将磷光绿色和红色墨水沉积到微通道中。然后,使用IPL蒸发将发光层(EML)的高分辨率图案均匀地蒸发到器件基板上。最终,我们制造出了绿色和红色磷光OLED器件,其具有线图案化EML的高像素密度,线宽为6μm,间距为13.6μm。此外,我们证明与通过传统溶液法制造的薄膜相比,IPL蒸发的薄膜具有许多优点。我们还表明,IPL蒸发过程对干燥或退火过程中有机分子聚集相关的问题不太敏感。因此,与旋涂OLED相比,IPL蒸发的OLED的器件性能和寿命得到了提高。