标题: 应用复合式电洞传输层之高效率有机电激发光元件
Highly Efficient Organic Electroluminescent Devices Incorporating a Composite Hole Transport Layer
作者: 廖启宏
Chi Hung Liao
陈金鑫
Chin Hsin Chen
应用化学系硕博士班
关键字: 有机电机发光元件;电洞传输层;高效率;OLED;Hole Transport Layer;High Efficiency
公开日期: 2004
摘要: 我们成功利用了CuPc捕捉与阻挡电洞的特性,搭配混掺电洞传输层之元件结构,开发出一新型电洞传输层(复合式电洞传输层)。藉由调整此电洞传输层内CuPc的掺杂浓度,可以有效的控制电洞在有机电激发光元件内的传输特性,达到载子平衡、提升元件发光效率的目的。

在绿光Alq3标准元件方面,套用复合式电洞传输层大幅的提升了元件发光效率达1.7倍,在20 mA/cm2电流密度下之最佳元件发光效率为5.96 cd/A,操作电压为7.64 V。不但如此,应用复合式电洞传输层在蓝光元件更有不错的表现。例如在DSA-Ph为客发光体之天蓝光元件,20 mA/cm2电流密度下之最佳元件发光效率为16.15 cd/A,操作电压为6.44 V,CIEx,y色度座标为(0.15, 0.29),不但不会对发光颜色造成任何影响,更有增加蓝光色饱和度的效果。另外,在BD1为客发光体之深蓝光元件,20 mA/cm2电流密度下之最佳元件发光效率为5.39 cd/A,操作电压为6.79 V,CIEx,y色度座标为(0.14, 0.13),与标准深蓝光元件比较,发光效率提升约2倍。
Carrier recombination as well as the balance of holes and electrons is considered to be one of the most important factors that determine the luminance efficiency of OLEDs. In this study, a novel composite hole transport layer (c-HTL) has been developed, which can efficiently control the hole mobility in order to improve hole-electron balance. Improvement in the hole/electron recombination was illustrated by the remarkably high luminance efficiency.

Under 20 mA/cm2 current driven condition, the Alq3-based green device with c-HTL has achieved a luminance efficiency of 5.96 cd/A at 7.64 V, which is 1.7 times higher than that of the standard device. Furthermore, c-HTL has demonstrated even better performance in blue devices. The sky-blue OLED with c-HTL based on the DSA-Ph dopant in MADN host has achieved a luminance efficiency of 16.15 cd/A with a CIEx,y color coordinate of [0.15, 0.29] at 6.44 V (20 mA/cm2) without deteriorating on the color saturation. The deep-blue device with c-HTL based on the BD1 dopant in MADN host has achieved a luminance efficiency of 5.39 cd/A with a CIEx,y color coordinate of [0.14, 0.13] at 6.79 V (20 mA/cm2), which is approximately 2 time higher than that of the standard device.
URI: http://140.113.39.130/cdrfb3/record/nctu/#GT009225505
http://hdl.handle.net/11536/76796
显示于类别:Thesis