标题: | 大面积上发光元件与纯刮刀制程有机发光元件之制程改进 Improving the manufacture of large-scale area top-emitting devices and bottom-emitting devices with blade-only coating |
作者: | 简培修 冉晓雯 卢廷昌 照明与能源光电研究所 |
关键字: | 大面积;刮刀制程;上发光;有机发光元件;OLED;PLED;blade-only coating;large area;top-emitting |
公开日期: | 2010 |
摘要: | 有机发光二极体(Organic Light-Emitting Diode,简称OLED)为近年来终极显示器 及照明系统的热门研究课题,其容易制作以及低驱动电压即可达到不错的放光效率与光 色等等好处,引起众多学者及厂商的研究关注。在本论文中使用溶液制程制作有机层薄 膜,讨论以铝、镍等不同金属与金属氧化物MoO3 做为阳极,并且使用导电度及透光度 均为金属中最好的Ag 做为阴极的上发光元件特性。在主动层材料为Green-B 以及 Ir(mppy)3 等绿光元件中,得到了接近甚至超过使用同种有机材料以ITO 为阳极、LiF/Al 为阴极的下发光元件的效率以及亮度。在小面积0.2×0.2cm2 元件成功之后,我们进一步 有别于一般旋转涂布制程,使用刮刀涂布成膜的方式成功制作了大面积2×3cm2 元件。 另一方面以纯粹刮刀制程的方式制作ITO 下发光Ir(mppy)3 元件也得到不错的效果,效 率可达28.7cd/A,证明了纯刮刀制程的可行性。 Organic Light-Emitting Diodes (OLED) is the one of the hottest research topics about the best display and lighting systems recently. Because OLED that can be produced easily with low driving voltage can achieve high efficiency and soft lighting, many scholars and manufacturers are much concerned about that. In this thesis, organic thin film is made by solution-processed blade coating methods. We discuss the characteristics of top-emitting organic light-emitting devices using metals such as Al, Ni with metal oxide (MoO3) on those metals to be anodes and choose Ag that is the best among all metals on conductivity and transparency to be cathode. Top-emitting devices have better efficiency and brightness than bottom-emitting organic light-emitting devices with the same organic film (material for EML is Green-B or Ir(mppy)3, and ITO for anode, LiF/Al for cathode). After obtaining good performance for the small area devices (0.2×0.2cm2), we attempt to use blade coating process to manufacture (unlike traditional method with spin coating only) large-scale area devices III (2×3cm2) and obtain nice performance, too. On another topic for blade-only coating process, we manufacture every organic film with blade coating. The efficiency of 28.7cd/A is achieved for bottom-emitting devices (material for EML is Ir(mppy)3, and ITO for anode). This result shows that blade-only coating process may be a practical way to produce OLED/PLED. |
URI: | http://140.113.39.130/cdrfb3/record/nctu/#GT079805513 http://hdl.handle.net/11536/46663 |
显示于类别: | Thesis |