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  • 學位論文

咪唑及吡咯兩系列化合物之合成、性質探討 及其在藍色磷光有機發光二極體之初步探討

Synthesis and Characterization of Imidazole and Pyrrole Compounds in Blue Phosphorescent Organic Light Emitting Diodes Preliminary Study

指導教授 : 梁文傑

摘要


本篇論文合成了咪唑、吡咯兩種不同系列之雙偶極化合物,探討其熱穩定性、能量轉移之行為、光物理及電化學性質,其中將咪唑系列之化合物3、6作為主發光體材料,摻混市售藍色磷光發光材料—FIrpic,製成有機電激發光二極體元件,其中以化合物3表現較好,在電荷密度20 mA/cm2時的操作電壓8.05 V為驅動電壓,亮度1869 cd/m2;操作電壓4.5V時可達最大發光效率29.32 cd/A,4.0 V時達最大發光功率21.34 lm/W,最大外部量子效率為10.81%;而吡咯系列化合物在電化學方面具有電聚合及電制變色之潛力,已初步探討這一系列化合物在電化學之表現行為。

並列摘要


Two series of bipolar imidazole and pyrrole compounds have been synthesized. The thermal stability,energy transfer, photophysics and electrochemical properties were investigated. The bipolar imidazole compound 3 and 6 as the new host materials for blue phosphorescent organic light emitting diodes (OLED). The device with the host of compound 3 and the guest of FIrpic exhibited the turn on voltage at 20 mA/cm2 of 8.05 V, luminance of 1869 cd/m2, max current efficiency of 29.32 cd/A at 4.5 V, power efficiency of 21.34lm/W at 4.0 V and the external quantum efficiency of 20.18 %. On the other hand, the pyrrole compounds have potential for electrochemical polymerization and the electrochromic mechanism has been studied.

並列關鍵字

OLED host bipolar imidazole pyrrole electrochemical polymerization

參考文獻


(1) 陳金鑫; 黃孝文: OLED 夢幻顯示器 OLED 材料與元件 五南圖書出版公司, 2007.
(2) Miyata, S.; Nalwa, H. S.: Organic Electroluminescent Materials and Devices, 1997.
(3) Sheats, J. R.; Barbara, P. F. Molecular Materials in Electronic and Optoelectronic Devices. Accounts of Chemical Research 1999, 32, 191-192.
(4) Pope, M.; Kallmann, H.; Magnante, P. Electroluminescence in organic crystals. The Journal of Chemical Physics 1963, 38, 2042-2043.
(5) Vincett, P. S.; Barlow, W. A.; Hann, R. A.; Roberts, G. G. Electrical conduction and low voltage blue electroluminescence in vacuum-deposited organic films. Thin Solid Films 1982, 94, 171-183.

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