Solution-Process Feasible Iridium Complex Based Yellow OLED
碩士 === 國立清華大學 === 材料科學工程學系 === 105 === Yellow emission plays an important role in many display and lighting applications, such as RGBY display or blue hazard free lighting sources, while wet-process enables soft devices to be manufactured cost-effectively. We demonstrate here that high efficiency ye...
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ndltd-TW-105NTHU51590802019-05-15T23:53:47Z http://ndltd.ncl.edu.tw/handle/6x48az Solution-Process Feasible Iridium Complex Based Yellow OLED 根基於可濕製銥錯合物黃光OLED Fu, Sheng-Ching 傅聖卿 碩士 國立清華大學 材料科學工程學系 105 Yellow emission plays an important role in many display and lighting applications, such as RGBY display or blue hazard free lighting sources, while wet-process enables soft devices to be manufactured cost-effectively. We demonstrate here that high efficiency yellow organic light-emitting diodes can be made with an innovative solution-process viable iridium based material bis[5-methyl-7-fluoro-8- trifluoromethyl-5H-benzo(c)(1,5)naphthyridin-6-one]iridium (picolinate) (FCF3BNO). The device exhibits a power efficacy of 49.2 lm W-1 at 1,000 cd m-2 with an external quantum efficiency of 22.7% with a spin-coated emissive layer. A National Television Standards Committee (NTSC) of 110% is achievable by employing the yellow emission along with the standard RGB. The high efficiency may be attributed to the electron-withdrawing F and CF3 substitutions in the emitter to prevent self-quenching from dense packing. We also found that high efficient can be achieved for wet-processed devices simply by balancing the injected holes and electrons with the help of energy-level matching hosts. The resultant RGBY composing pure white light is 8% more friendly than the typical RGB counterpart from retina protection perspective and also 8% better for melatonin secretion. Jou, Jwo-Huei 周卓煇 2017 學位論文 ; thesis 111 zh-TW |
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碩士 === 國立清華大學 === 材料科學工程學系 === 105 === Yellow emission plays an important role in many display and lighting applications, such as RGBY display or blue hazard free lighting sources, while wet-process enables soft devices to be manufactured cost-effectively. We demonstrate here that high efficiency yellow organic light-emitting diodes can be made with an innovative solution-process viable iridium based material bis[5-methyl-7-fluoro-8- trifluoromethyl-5H-benzo(c)(1,5)naphthyridin-6-one]iridium (picolinate) (FCF3BNO). The device exhibits a power efficacy of 49.2 lm W-1 at 1,000 cd m-2 with an external quantum efficiency of 22.7% with a spin-coated emissive layer. A National Television Standards Committee (NTSC) of 110% is achievable by employing the yellow emission along with the standard RGB. The high efficiency may be attributed to the electron-withdrawing F and CF3 substitutions in the emitter to prevent self-quenching from dense packing. We also found that high efficient can be achieved for wet-processed devices simply by balancing the injected holes and electrons with the help of energy-level matching hosts. The resultant RGBY composing pure white light is 8% more friendly than the typical RGB counterpart from retina protection perspective and also 8% better for melatonin secretion.
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author2 |
Jou, Jwo-Huei |
author_facet |
Jou, Jwo-Huei Fu, Sheng-Ching 傅聖卿 |
author |
Fu, Sheng-Ching 傅聖卿 |
spellingShingle |
Fu, Sheng-Ching 傅聖卿 Solution-Process Feasible Iridium Complex Based Yellow OLED |
author_sort |
Fu, Sheng-Ching |
title |
Solution-Process Feasible Iridium Complex Based Yellow OLED |
title_short |
Solution-Process Feasible Iridium Complex Based Yellow OLED |
title_full |
Solution-Process Feasible Iridium Complex Based Yellow OLED |
title_fullStr |
Solution-Process Feasible Iridium Complex Based Yellow OLED |
title_full_unstemmed |
Solution-Process Feasible Iridium Complex Based Yellow OLED |
title_sort |
solution-process feasible iridium complex based yellow oled |
publishDate |
2017 |
url |
http://ndltd.ncl.edu.tw/handle/6x48az |
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