Nano Gold Particle Enhanced Organic Light Emitting Diode
碩士 === 國立清華大學 === 材料科學工程學系 === 104 === Organic light emitting diode (OLED) can be applied to high quality displays and solid-state lightings due to its self-luminous, low-power consumption, wide-viewing angle, lightness, thinness and flexibility. However, to make products more energy-efficient and w...
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ndltd-TW-104NTHU51590122019-05-15T22:33:36Z http://ndltd.ncl.edu.tw/handle/8hctbh Nano Gold Particle Enhanced Organic Light Emitting Diode 奈米金粒子強化有機發光二極體 Lo, Tan 羅丹 碩士 國立清華大學 材料科學工程學系 104 Organic light emitting diode (OLED) can be applied to high quality displays and solid-state lightings due to its self-luminous, low-power consumption, wide-viewing angle, lightness, thinness and flexibility. However, to make products more energy-efficient and with longer lifetime, high efficiency OLED research and development are critical. Besides developing new materials or changing device structures, modification can also be achieved by using additive elements. In this study, we incorporated gold nanoparticles into OLEDs, which notably improved the efficacy and the maximum brightness of green and blue devices. For example, the efficacy at 1,000 cd/m2 increases 24.8% (29.0→36.2 lm/W) and 35.0% (6.0→8.1 lm/W) while the max brightness increases 29.3% (21,500→27,800 cd/m2) and 24.3% (7,800→9,700 cd/m2) for green and blue device. These improvements may be attributed to the current density enhancement due to the incorporation of gold nanoparticles that strengthen the carrier injection. In addition, the use of nanoparticles has following advantages: (1) It is added in non-emissive layer, thus it can be applied to either phosphorescence or fluorescence devices with different colors. (2) Its wet-processable characteristic provides competitive potential for low cost and large area production. Jou, Jwo Huei 周卓煇 2015 學位論文 ; thesis 107 zh-TW |
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碩士 === 國立清華大學 === 材料科學工程學系 === 104 === Organic light emitting diode (OLED) can be applied to high quality displays and solid-state lightings due to its self-luminous, low-power consumption, wide-viewing angle, lightness, thinness and flexibility. However, to make products more energy-efficient and with longer lifetime, high efficiency OLED research and development are critical. Besides developing new materials or changing device structures, modification can also be achieved by using additive elements. In this study, we incorporated gold nanoparticles into OLEDs, which notably improved the efficacy and the maximum brightness of green and blue devices. For example, the efficacy at 1,000 cd/m2 increases 24.8% (29.0→36.2 lm/W) and 35.0% (6.0→8.1 lm/W) while the max brightness increases 29.3% (21,500→27,800 cd/m2) and 24.3% (7,800→9,700 cd/m2) for green and blue device. These improvements may be attributed to the current density enhancement due to the incorporation of gold nanoparticles that strengthen the carrier injection.
In addition, the use of nanoparticles has following advantages: (1) It is added in non-emissive layer, thus it can be applied to either phosphorescence or fluorescence devices with different colors. (2) Its wet-processable characteristic provides competitive potential for low cost and large area production.
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author2 |
Jou, Jwo Huei |
author_facet |
Jou, Jwo Huei Lo, Tan 羅丹 |
author |
Lo, Tan 羅丹 |
spellingShingle |
Lo, Tan 羅丹 Nano Gold Particle Enhanced Organic Light Emitting Diode |
author_sort |
Lo, Tan |
title |
Nano Gold Particle Enhanced Organic Light Emitting Diode |
title_short |
Nano Gold Particle Enhanced Organic Light Emitting Diode |
title_full |
Nano Gold Particle Enhanced Organic Light Emitting Diode |
title_fullStr |
Nano Gold Particle Enhanced Organic Light Emitting Diode |
title_full_unstemmed |
Nano Gold Particle Enhanced Organic Light Emitting Diode |
title_sort |
nano gold particle enhanced organic light emitting diode |
publishDate |
2015 |
url |
http://ndltd.ncl.edu.tw/handle/8hctbh |
work_keys_str_mv |
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