Efficient organic electroluminescent devices using single-layer doped polymer thin films with bipolar carrier transport abilities

被引:204
作者
Wu, CC
Sturm, JC
Register, RA
Tian, J
Dana, EP
Thompson, ME
机构
[1] PRINCETON UNIV, DEPT CHEM, CTR PHOTON & OPTOELECT MAT, PRINCETON, NJ 08544 USA
[2] RAYCHEM CORP, MENLO PK, CA 94025 USA
[3] UNIV SO CALIF, DEPT CHEM, LOS ANGELES, CA 90089 USA
基金
美国国家科学基金会;
关键词
D O I
10.1109/16.605468
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
Detailed studies of electroluminescent devices made from single-layer doped polymer blend thin films having bipolar carrier transport abilities are presented. The active organic layer consists of the hole-transport polymer poly(N-vinylcarbazole) (PVK) containing dispersed electron-transport molecules, as well as different fluorescent small molecules or polymers as emitting centers to vary the emission color. Both the photoluminescence and electroluminescence (EL) properties are extensively studied, In photoluminescence, very efficient transfer of energy can occur from the host to very dilute (similar to 1 wt.%) amounts of emitting materials. When covered with a metal layer, the intensity of photoluminescence from blend thin films was found to be dependent on the type of metal coverage. The optical and electrical properties of materials and devices were systematically studied to understand the operating mechanisms and to optimize the devices. In EL, excitons appear to be formed at doped emitting centers, rather than in the host, We shaw that in an optimized device, a relatively high external quantum efficiency (>1%, backside emission only) and a low operating voltage (<10 V for over 100 cd/m(2)) can be easily achieved by this class of devices. It was also found air-stable Ag is as good as reactive Mg:Ag alloy for the cathode contact in devices using PVK containing dispersed electron-transport oxadiazole molecules.
引用
收藏
页码:1269 / 1281
页数:13
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