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Influence of hydrogen incorporation on conductivity and work function of VO2 nanowires

Authors
Kim, Jae-EunShin, Jung YeolJang, Hyun-SeokJeon, Jun WooHong, Won G.Kim, Hae JinChoi, JunheeKim, Gyu-TaeKim, Byung HoonPark, JonghyurkChoi, Young JinPark, Jeong Young
Issue Date
14-Mar-2019
Publisher
ROYAL SOC CHEMISTRY
Citation
NANOSCALE, v.11, no.10, pp.4219 - 4225
Indexed
SCIE
SCOPUS
Journal Title
NANOSCALE
Volume
11
Number
10
Start Page
4219
End Page
4225
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/66666
DOI
10.1039/c9nr00245f
ISSN
2040-3364
Abstract
We report improved conductance by reducing the work function via incorporation of hydrogen into VO2 nanowires. The VO2 nanowires were prepared using the chemical vapor deposition method with V2O5 powder on silicon substrates at 850 degrees C. Hydrogenation was carried out using the high-pressure hydrogenation method. Raman spectroscopy confirmed that the incorporated hydrogen atoms resulted in a change in the lattice constant of the VO2 nanowires (NWs). To quantitatively measure the work function of the nanowires, Kelvin probe force microscopy (KPFM) was employed at ambient conditions. We found that the work function decreased with increasing H-2 pressure, which also resulted in increased conductance. This is associated with hydrogen diffused into the VO2 that acts as a donor to elevate the Fermi level, which was also confirmed by KPFM. From these results, tuning of the reversible electrical properties of VO2 NWs, including the conductance and work function, can be achieved by incorporating hydrogen at relatively moderate temperatures.
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