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Morphology control of one-dimensional gallium nitride nanostructures by modulating the crystallinity of sacrificial gallium oxide templatesopen access

Authors
Ko, Yun TaekPark, MijeongPark, JingyeongMoon, JaeyunChoa, Yong-HoLee, Young-In
Issue Date
Sep-2021
Publisher
Polska Akademia Nauk
Keywords
Chemical Transformation; Electrospinning; GaN; Nanofiber; Nanotube
Citation
Archives of Metallurgy and Materials, v.66, no.3, pp 709 - 712
Pages
4
Indexed
SCIE
SCOPUS
Journal Title
Archives of Metallurgy and Materials
Volume
66
Number
3
Start Page
709
End Page
712
URI
https://scholarworks.bwise.kr/erica/handle/2021.sw.erica/118949
DOI
10.24425/amm.2021.136366
ISSN
1733-3490
Abstract
In this study, we demonstrated a method of controllably synthesizing one-dimensional nanostructures having a dense or a hollow structure using fibrous sacrificial templates with tunable crystallinity. The fibrous ga2o3 templates were prepared by calcining the polymer/gallium precursor nanofiber synthesized by an electrospinning process, and their crystallinity was varied by controlling the calcination temperature from 500oC to 900oC. gaN nanostructures were transformed by nitriding the ga2o3 nanofibers using NH3 gas. All of the transformed gaN nanostructures maintained a one-dimensional structure well and exhibited a diameter of about 50 nm, but their morphology was clearly distinguished according to the crystallinity of the templates. When the templates having a relatively low crystallinity were used, the transformed gaN showed a hollow nanostructure, and as the crystallinity increased, gaN was converted into a denser nanostructure. This morphological difference can be explained as being caused by the difference in the diffusion rate of ga depending on the crystallinity of ga2o3 during the conversion from ga2o3 to gaN. it is expected that this technique will make possible the tubular nanostructure synthesis of nitride functional nanomaterials. © 2021. The Author(s).
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CHOA, YONG HO
ERICA 공학대학 (DEPARTMENT OF MATERIALS SCIENCE AND CHEMICAL ENGINEERING)
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