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Molecular beam epitaxy growth of GaN films on a tungsten carbide/Si template

Authors
Cho, SungminChoi, SungkukCho, YoungjiLee, SangtaeLee, MoonjinChang, Jiho
Issue Date
1-3월-2018
Publisher
ELSEVIER SCIENCE SA
Keywords
Gas-source molecular beam epitaxy; Gallium nitride; Silicon; Tungsten carbide; Buffer layer
Citation
THIN SOLID FILMS, v.649, pp 232 - 236
Pages
5
Journal Title
THIN SOLID FILMS
Volume
649
Start Page
232
End Page
236
URI
https://www.kriso.re.kr/sciwatch/handle/2021.sw.kriso/469
DOI
10.1016/j.tsf.2018.01.057
ISSN
0040-6090
Abstract
This study examined the growth of GaN layers by molecular beam epitaxy (MBE) using a tungsten carbide (WC) buffer sputtered on a Si(111) surface. The chemical stability of the WC layer against the Ga-Si interaction was verified experimentally. A low-temperature (LT) buffer is essential for the growth of single-crystal-quality, high-temperature gallium nitride (HT-GaN) on a WC surface. In addition, dislocation termination techniques, such as interface formation and the annealing of the buffer layer, were adopted to improve the crystalline quality. The HT-GaN sample grown on the annealed double-buffer-layer (AlN/GaN) revealed an X-ray diffraction full-width at half maximum, Hall carrier density, and carrier mobility of 2260 arcsecs, 4.39x10(18) cm(3), and 19.4 cm(2)/Vs, respectively. The crystalline quality of the GaN layer is discussed in comparison with previously reported GaN/sapphire samples.
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