透過您的圖書館登入
IP:3.128.94.171
  • 期刊

高效率多孔隙氮化銦鎵發光元件研製

High-Efficiency InGaN-based Light-Emitting Diodes with Nanoporous GaN:Mg Structure

摘要


本實驗將針對多孔隙氮化鎵拉米結構進行研究,採用光致電化學氧化技術將氮化鎵磊晶層氧化蝕刻形成多孔隙結構,應用於氮化銦鎵發光元件之P型氮化鎵表面粗化,製作高效率發光元件,研究元件特性如下:(1)多孔隙P型氮化鎵表面對光散射與破壞全反射有助於提升光取出效率。(2)多孔隙P型氮化鎵結構釋放氮化銦鎵發光層所受之壓縮應力,使壓電場效應減少並提升電子電洞結合效率對發光效率。(3)在電激發光光性量測上,多孔隙氮化鎵發光元件中觀察到發光波長藍移與發光效率提升之效應。

並列摘要


In this research nanoporous structures on p-type GaN:Mg and n-type GaN:Si surfaces were fabricated through a photoelectrochemical (PEC) oxidation and an oxide-removing process. The photoluminescence (PL) intensities of GaN and InGaN/GaN multi-quantum-well (MQW) structures were enhanced by forming this nanoporous structure to increase light extraction efficiency. The PL emission peaks of an MQW active layer have a blueshift phenomenon from 465.5 nm (standard) to 456.0 nm (nanoporous) measured at 300 K which was caused by partially releasing the compressive strain from the top GaN:Mg layers. The internal quantum efficiency could be increased by a partial strain release that induces a lower piezoelectric field in the active layer. The thermal activation energy of a nanoporous structure (85 meV) is higher than the standard one (33 meV) from a temperature dependent PL measurement. The internal quantum efficiency and light extraction efficiency of an InGaN/GaN MQW active layer are significantly enhanced by this nanoporous GaN:Mg surface, and this PEC treated nanoporous structure is suitable for high-power lighting applications.

被引用紀錄


Huang, H. K. (2014). 順丁烯二酸對澱粉的結構與流變行為在升降溫過程中的影響 [master's thesis, National Tsing Hua University]. Airiti Library. https://doi.org/10.6843/NTHU.2014.00231
Yeh, C. H. (2014). 新穎石墨烯電子元件: 由磊晶成長技術至高速電晶體應用 [doctoral dissertation, National Tsing Hua University]. Airiti Library. https://doi.org/10.6843/NTHU.2014.00147
王琬婷(2013)。液液微萃取法搭配極致效能液相層析儀分析水樣中的硝基酚類化合物〔碩士論文,國立清華大學〕。華藝線上圖書館。https://doi.org/10.6843/NTHU.2013.00177
邱奏翰(2013)。高度平行化之非規律性LDPC解碼器在通用式圖形處理器上之設計〔碩士論文,國立交通大學〕。華藝線上圖書館。https://doi.org/10.6842/NCTU.2013.00654
Hsu, C. Y. (2011). 金氧半及鰭式場效電晶體閘極穿隧電流之先進模擬及其潛在應用 [doctoral dissertation, National Chiao Tung University]. Airiti Library. https://doi.org/10.6842/NCTU.2011.00965

延伸閱讀