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Explorations on Growth of Blue-Green-Yellow-Red InGaN Quantum Dots by Plasma-Assisted Molecular Beam Epitaxy
by
Zhiwei Xing
, Shulong Lu
, Haibing Qiu
, Yuta Suzuki
, Atsushi Tackeuchi
, Yuki Matsuda
, Yuichi Nakamura
, Lifeng Bian
, Xue Zhang
, Ying Gu
, Wenxian Yang
, Shinji Izumi
, Yong Cai
, Sakuya Kaneko
in
Chemistry
/ Efficiency
/ Electric fields
/ Electroluminescence
/ Emissions
/ Energy
/ Epitaxial growth
/ Epitaxy
/ Gallium nitrides
/ green light-emitting diode
/ Growth conditions
/ Indium gallium nitrides
/ InGaN quantum dots
/ InGaN quantum dots; self-assembled growth; green light-emitting diode; plasma-assisted molecular beam epitaxy
/ Injection
/ Injection current
/ Light emission
/ Light emitting diodes
/ Molecular beam epitaxy
/ Morphology
/ Nitrogen
/ Optical properties
/ Organic chemicals
/ plasma-assisted molecular beam epitaxy
/ QD1-999
/ Quantum dots
/ Quantum efficiency
/ Radio frequency plasma
/ self-assembled growth
/ Self-assembly
/ Wavelength
2022
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Explorations on Growth of Blue-Green-Yellow-Red InGaN Quantum Dots by Plasma-Assisted Molecular Beam Epitaxy
by
Zhiwei Xing
, Shulong Lu
, Haibing Qiu
, Yuta Suzuki
, Atsushi Tackeuchi
, Yuki Matsuda
, Yuichi Nakamura
, Lifeng Bian
, Xue Zhang
, Ying Gu
, Wenxian Yang
, Shinji Izumi
, Yong Cai
, Sakuya Kaneko
in
Chemistry
/ Efficiency
/ Electric fields
/ Electroluminescence
/ Emissions
/ Energy
/ Epitaxial growth
/ Epitaxy
/ Gallium nitrides
/ green light-emitting diode
/ Growth conditions
/ Indium gallium nitrides
/ InGaN quantum dots
/ InGaN quantum dots; self-assembled growth; green light-emitting diode; plasma-assisted molecular beam epitaxy
/ Injection
/ Injection current
/ Light emission
/ Light emitting diodes
/ Molecular beam epitaxy
/ Morphology
/ Nitrogen
/ Optical properties
/ Organic chemicals
/ plasma-assisted molecular beam epitaxy
/ QD1-999
/ Quantum dots
/ Quantum efficiency
/ Radio frequency plasma
/ self-assembled growth
/ Self-assembly
/ Wavelength
2022
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Explorations on Growth of Blue-Green-Yellow-Red InGaN Quantum Dots by Plasma-Assisted Molecular Beam Epitaxy
by
Zhiwei Xing
, Shulong Lu
, Haibing Qiu
, Yuta Suzuki
, Atsushi Tackeuchi
, Yuki Matsuda
, Yuichi Nakamura
, Lifeng Bian
, Xue Zhang
, Ying Gu
, Wenxian Yang
, Shinji Izumi
, Yong Cai
, Sakuya Kaneko
in
Chemistry
/ Efficiency
/ Electric fields
/ Electroluminescence
/ Emissions
/ Energy
/ Epitaxial growth
/ Epitaxy
/ Gallium nitrides
/ green light-emitting diode
/ Growth conditions
/ Indium gallium nitrides
/ InGaN quantum dots
/ InGaN quantum dots; self-assembled growth; green light-emitting diode; plasma-assisted molecular beam epitaxy
/ Injection
/ Injection current
/ Light emission
/ Light emitting diodes
/ Molecular beam epitaxy
/ Morphology
/ Nitrogen
/ Optical properties
/ Organic chemicals
/ plasma-assisted molecular beam epitaxy
/ QD1-999
/ Quantum dots
/ Quantum efficiency
/ Radio frequency plasma
/ self-assembled growth
/ Self-assembly
/ Wavelength
2022
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Explorations on Growth of Blue-Green-Yellow-Red InGaN Quantum Dots by Plasma-Assisted Molecular Beam Epitaxy
Journal Article
Explorations on Growth of Blue-Green-Yellow-Red InGaN Quantum Dots by Plasma-Assisted Molecular Beam Epitaxy
2022
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Overview
Self-assembled growth of blue-green-yellow-red InGaN quantum dots (QDs) on GaN templates using plasma-assisted molecular beam epitaxy were investigated. We concluded that growth conditions, including small N2 flow and high growth temperature are beneficial to the formation of InGaN QDs and improve the crystal quality. The lower In/Ga flux ratio and lower growth temperature are favorable for the formation of QDs of long emission wavelength. Moreover, the nitrogen modulation epitaxy method can extend the wavelength of QDs from green to red. As a result, visible light emissions from 460 nm to 622 nm have been achieved. Furthermore, a 505 nm green light-emitting diode (LED) based on InGaN/GaN MQDs was prepared. The LED has a low external quantum efficiency of 0.14% and shows an efficiency droop with increasing injection current. However, electroluminescence spectra exhibited a strong wavelength stability, with a negligible shift of less than 1.0 nm as injection current density increased from 8 A/cm2 to 160 A/cm2, owing to the screening of polarization-related electric field in QDs.
Publisher
MDPI AG,MDPI
Subject
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