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Remote heteroepitaxy of GaN microrod heterostructures for deformable light-emitting diodes and wafer recycle

Cited 80 time in Web of Science Cited 75 time in Scopus
Authors

Jeong, Junseok; Wang, Qingxiao; Cha, Janghwan; Jin, Dae Kwon; Shin, Dong Hoon; Kwon, Sunah; Kang, Bong Kyun; Jang, Jun Hyuk; Yang, Woo Seok; Choi, Yong Seok; Yoo, Jinkyoung; Kim, Jong Kyu; Lee, Chul-Ho; Lee, Sangwook; Zakhidov, Anvar A.; Hong, Suklyun; Kim, Moon J.; Hong, Young Joon

Issue Date
2020-06
Publisher
American Association for the Advancement of Science
Citation
Science Advances, Vol.6 No.23, p. eaaz5180
Abstract
There have been rapidly increasing demands for flexible lighting apparatus, and micrometer-scale light-emitting diodes (LEDs) are regarded as one of the promising lighting sources for deformable device applications. Herein, we demonstrate a method of creating a deformable LED, based on remote heteroepitaxy of GaN microrod (MR) p-n junction arrays on c-Al2O3 wafer across graphene. The use of graphene allows the transfer of MR LED arrays onto a copper plate, and spatially separate MR arrays offer ideal device geometry suitable for deformable LED in various shapes without serious device performance degradation. Moreover, remote heteroepitaxy also allows the wafer to be reused, allowing reproducible production of MR LEDs using a single substrate without noticeable device degradation. The remote heteroepitaxial relation is determined by high-resolution scanning transmission electron microscopy, and the density functional theory simulations clarify how the remote heteroepitaxy is made possible through graphene.
ISSN
2375-2548
URI
https://hdl.handle.net/10371/202251
DOI
https://doi.org/10.1126/sciadv.aaz5180
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  • College of Engineering
  • Department of Electrical and Computer Engineering
Research Area 2차원 반도체 소자 및 재료, High-Performance 2D Electronics, Low-Power 2D Electronics, 뉴로모픽 소자 및 응용기술, 저전력 소자 및 소자물리

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