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The influence of oxygen partial pressure on the performance and stability of Ge-doped InGaO thin film transistors

Authors
Lee, Kwang-HoOk, Kyung-ChulKim, H.Park, Jin-Seong
Issue Date
Mar-2014
Publisher
Elsevier
Keywords
Oxide semiconductor; Thin film transistor; Ge-In-Ga-O; Oxygen pressure; Bias stability
Citation
Ceramics International, v.40, no.2, pp 3215 - 3220
Pages
6
Indexed
SCI
SCIE
SCOPUS
Journal Title
Ceramics International
Volume
40
Number
2
Start Page
3215
End Page
3220
URI
https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/160491
DOI
10.1016/j.ceramint.2013.09.118
ISSN
0272-8842
1873-3956
Abstract
The device performance and bias stability of radio frequency (RF) sputtered Ge-doped InGaO (GIGO) thin film transistors (TFTs) were investigated as a function of oxygen partial pressure during the deposition step. At low oxygen partial pressure, the electrical performance and stability of GIGO TFTs were significantly improved with a decrease of oxygen deficient bonding states, suggesting strong oxygen bonding ability of Ge atoms. We demonstrate that these changes can be corroborated with the evolution of the electronic structure, such as band alignment and band edge states below the conduction band, as measured by X-ray photoelectron spectroscopy and spectroscopic ellipsometry analysis. As the oxygen partial pressure decreased, the energy difference between the conduction band minimum and Fermi level and the deep band edge states was decreased. In particular, it was revealed that, with an increase of oxygen partial pressure, the relative energy level of the band edge states was shifted to a deeper level within the bandgap.
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