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Cited 26 time in webofscience Cited 32 time in scopus
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Deep-ultraviolet electroluminescence and photocurrent generation in graphene/hBN/graphene heterostructures SCIE SCOPUS

Title
Deep-ultraviolet electroluminescence and photocurrent generation in graphene/hBN/graphene heterostructures
Authors
Song, Su-BeomYoon, SanghoKim, So YoungYang, SeraSeo, Seung-YoungCha, SoonyoungJeong, Hyeon-WooWatanabe, KenjiTaniguchi, TakashiLee, Gil-HoKim, Jun SungJo, Moon-HoKim, Jonghwan
Date Issued
2021-12
Publisher
Nature Publishing Group
Abstract
Hexagonal boron nitride (hBN) is a van der Waals semiconductor with a wide bandgap of similar to 5.96 eV. Despite the indirect bandgap characteristics of hBN, charge carriers excited by high energy electrons or photons efficiently emit luminescence at deep-ultraviolet (DUV) frequencies via strong electron-phonon interaction, suggesting potential DUV light emitting device applications. However, electroluminescence from hBN has not been demonstrated at DUV frequencies so far. In this study, we report DUV electroluminescence and photocurrent generation in graphene/hBN/graphene heterostructures at room temperature. Tunneling carrier injection from graphene electrodes into the band edges of hBN enables prominent electroluminescence at DUV frequencies. On the other hand, under DUV laser illumination and external bias voltage, graphene electrodes efficiently collect photo-excited carriers in hBN, which generates high photocurrent. Laser excitation micro-spectroscopy shows that the radiative recombination and photocarrier excitation processes in the heterostructures mainly originate from the pristine structure and the stacking faults in hBN. Our work provides a pathway toward efficient DUV light emitting and detection devices based on hBN.
URI
https://oasis.postech.ac.kr/handle/2014.oak/110771
DOI
10.1038/s41467-021-27524-w
ISSN
2041-1723
Article Type
Article
Citation
Nature Communications, vol. 12, no. 1, 2021-12
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