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Dive into the research topics where Wang Guangxu is active.

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Featured researches published by Wang Guangxu.


Chinese Physics B | 2015

Status of GaN-based green light-emitting diodes*

Liu Junlin; Zhang Jianli; Wang Guangxu; Mo Chunlan; Xu Longquan; Ding Jie; Quan Zhijue; Wang Xiaolan; Pan Shuan; Zheng Chang-Da; Wu Xiao-Ming; Fang Wenqing; Jiang Fengyi

GaN-based blue light emitting diodes (LEDs) have undergone great development in recent years, but the improvement of green LEDs is still in progress. Currently, the external quantum efficiency (EQE) of GaN-based green LEDs is typically 30%, which is much lower than that of top-level blue LEDs. The current challenge with regard to GaN-based green LEDs is to grow a high quality InGaN quantum well (QW) with low strain. Many techniques of improving efficiency are discussed, such as inserting AlGaN between the QW and the barrier, employing prestrained layers beneath the QW and growing semipolar QW. The recent progress of GaN-based green LEDs on Si substrate is also reported: high efficiency, high power green LEDs on Si substrate with 45.2% IQE at 35 A/cm2, and the relevant techniques are detailed.


SCIENTIA SINICA Physica, Mechanica & Astronomica | 2015

High optical efficiency GaN based blue LED on silicon substrate

Jiang Fengyi; Liu Junlin; Wang Li; Xiong Chuanbing; Fang Wenqing; Mo Chunlan; Tang Yingwen; Wang Guangxu; Xu Longquan; Ding Jie; Wang Xiaolan; Quan Zhijue; Zhang JianLi; Zhang Meng; Pan Shuan; Zheng Chang-Da

After nearly ten years of exploration, our team firstly had a breakthrough in the technologies of materials growth and thin film chip manufacturing for high efficiency GaN based blue LED on silicon substrate in the world. The internal quantum efficiency and extraction efficiency of the vertical structure blue LED chips reached 80%. These LED chips have been realized mass production, and been successfully used in street lamps, miners lamp, down light, bulb light, flashlight and display imaging etc. In this paper, the related key technologies are comprehensive and systematically introduced. Selective-Area-Growth and Maskless-Micro-Epitaxial-Lateral-Overgrowth technologies were invented, by which a high crystalline quality GaN film was achieved with an only 100 nm AlN buffer layer. A set of systemic technologies were invented for manufacturing vertical thin film structure LED on silicon substrate, included high reflectance low resistance P type ohmic contact electrode, high stability low resistance N type electrode ohmic contact, surface roughening, complementary electrode, releasing residual tensile stress of GaN film technologies etc. At 350 mA (35 A/cm2), the light output power of blue LED (450 nm) on silicon is 657 mW, and external quantum efficiency of it is 68.1%.


Archive | 2014

Vertical structure light emitting diode chip with low cost and preparation method thereof

Wang Guangxu; Liu Junlin; Jiang Fengyi


Archive | 2013

Rectangular imaged silicon substrate for growing hexagonal-phase GaN

Liu Junlin; Wang Guangxu; Jiang Fengyi


Archive | 2015

Method for manufacturing substrate of LED thin film chip and structure of substrate

Wang Guangxu; Liu Junlin; Jiang Fengyi


Archive | 2011

Effects of Ni-assisted annealing on p-type contact resistivity of GaN-based LED films grown on Si(111) substrates

Wang Guangxu; Xiong Chuanbing; Liu Junlin; Feng Fei-Fei; Zhang Meng; Jiang Fengyi


Archive | 2017

Epitaxial structure of AlInGaN-based multi-quantum well light-emitting diode

Mo Chunlan; Quan Zhijue; Jiang Fengyi; Liu Junlin; Wang Guangxu


Archive | 2017

Non -fluorescence powder type yellow -green light LED high -light flashlight

Guo Xing; Wang Guangxu; Fu Jiang; Liu Junlin; Jiang Fengyi


Archive | 2017

Film LED chip structure

Li Shuqiang; Chen Fang; Shi Wei; Wang Guangxu; Jiang Fengyi


Archive | 2017

Surface microstructure preparation method based on active refrigeration liquid droplet coagulation

Guo Xing; Wang Guangxu; Liu Junlin; Jiang Fengyi

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Wu Xiao-Ming

Tianjin University of Technology

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