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Nearly single-crystalline GaN light-emitting diodes on amorphous glass substrates

Authors
Choi, Jun HeeZoulkarneev, AndreiKim, Sun IlBaik, Chan WookYang, Min HoPark, Sung SooSuh, HwansooKim, Un JeongSon, Hyung BinLee, Jae SoongKim, MiyoungKim, Jong MinKim, Kinam
Issue Date
Dec-2011
Publisher
NATURE PUBLISHING GROUP
Citation
NATURE PHOTONICS, v.5, no.12, pp 763 - 769
Pages
7
Journal Title
NATURE PHOTONICS
Volume
5
Number
12
Start Page
763
End Page
769
URI
https://scholarworks.bwise.kr/cau/handle/2019.sw.cau/66829
DOI
10.1038/nphoton.2011.253
ISSN
1749-4885
1749-4893
Abstract
Single-crystalline GaN-based light-emitting diodes (s-LEDs) on crystalline sapphire wafers can provide point-like light sources with high conversion efficiency and long working lifetimes. Recently, s-LEDs on silicon wafers have been developed in efforts to overcome the size limitations of the sapphire substrate. However, to create larger, cheaper and efficient flat light sources, the fabrication of high-performance s-LEDs on amorphous glass substrates would be required, which remains a scientific challenge. Here, we report the fabrication of nearly single-crystalline GaN on amorphous glass substrates, in the form of pyramid arrays. This is achieved by high-temperature, predominant GaN growth on a site-confined nucleation layer with preferential polycrystalline morphology through local hetero-epitaxy. InGaN/GaN multiple-quantum wells formed on the GaN pyramid arrays exhibit a high internal quantum efficiency of 52%. LED arrays fabricated using these GaN pyramid arrays demonstrate reliable and stable area-type electroluminescent emission with a luminance of 600 cd m(-2).
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창의ICT공과대학 (융합공학부)
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