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Highly Efficient Excitonic Recombination of Non-polar (11(2)over-bar0) GaN Nanocrystals for Visible Light Emitter by Hydride Vapour Phase Epitaxy

Title
Highly Efficient Excitonic Recombination of Non-polar (11(2)over-bar0) GaN Nanocrystals for Visible Light Emitter by Hydride Vapour Phase Epitaxy
Author
김재균
Issue Date
2020-02
Publisher
NATURE PUBLISHING GROUP
Citation
SCIENTIFIC REPORTS, v. 10, no. 1, Article no. 2076, 10pp
Abstract
While non-polar nanostructured-GaN crystals are considered as a prospective material for the realization of futuristic opto-electronic application, the formation of non-polar GaN nanocrystals (NCs) with highly efficient visible emission characteristics remain unquestionable up to now. Here, we report the oxygen-incorporated a-plane GaN NCs with highly visible illumination excitonic recombination characteristics. Epitaxially aligned a-plane NCs with average diameter of 100 nm were formed on r-plane sapphire substrates by hydride vapor phase epitaxy (HVPE), accompanied by the oxygen supply during the growth. X-ray photoemission spectroscopy measurements proved that the NCs exhibited Ga-O bonding in the materials, suggesting the formation of oxidized states in the bandgap. It was found that the NCs emitted the visible luminescence wavelength of 400.500 nm and 680.720 nm, which is attributed to the transition from oxygen-induced localized states. Furthermore, time-resolved photoluminescence studies revealed the significant suppression of the quantum confined Stark effect and highly efficient excitonic recombination within GaN NCs. Therefore, we believe that the HVPE non-polar GaN NCs can guide the simple and efficient way toward the nitride-based next-generation nanophotonic devices.
URI
http://eds.b.ebscohost.com/eds/detail/detail?vid=0&sid=7a94e24e-a499-42bf-96f5-d915d9784e10%40pdc-v-sessmgr01&bdata=Jmxhbmc9a28mc2l0ZT1lZHMtbGl2ZQ%3d%3d#AN=000562827500004&db=edswschttps://repository.hanyang.ac.kr/handle/20.500.11754/163220
ISSN
2045-2322
DOI
10.1038/s41598-020-58887-7
Appears in Collections:
COLLEGE OF SCIENCE AND CONVERGENCE TECHNOLOGY[E](과학기술융합대학) > PHOTONICS AND NANOELECTRONICS(나노광전자학과) > Articles
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