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Achieving high field-effect mobility exceeding 60 cm2/Vs in izto transistor via metal-assisted crystallization

Authors
On, NuriJeong, Jae Kyeong
Issue Date
May-2019
Publisher
Blackwell Publishing Ltd
Keywords
Crystallization; IZTO; Low temperature annealing; Metal capping; Oxide semiconductor; Thin-film transistors
Citation
Digest of Technical Papers - SID International Symposium, v.50, no.Book 1, pp.520 - 523
Indexed
SCOPUS
Journal Title
Digest of Technical Papers - SID International Symposium
Volume
50
Number
Book 1
Start Page
520
End Page
523
URI
https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/4567
DOI
10.1002/sdtp.12971
ISSN
0097-966X
Abstract
In this paper, the effects of post annealing on the structural, chemical and electrical properties of tantalum (Ta) capped IZTO films were examined for use as the channel in thin-fdm transistors (TFTs). The onset crystallization temperature of amorphous IZTO was found to be ≥700 °C, which is not suitable for glass or plastic substrate-based display devices. New crystallization method involving the catalytic Ta capping and subsequent post annealing was proposed for the IZTO material system at a low temperature of200 V. The TFTs with Ta-assisted crystallized IZTO channel exhibited a high field-effect mobility of 60.3 cm2/Vs, subthreshold swing of 0.20 V/decade, threshold voltage of -0.39 V, and ION/OFF ratio of -10s, which was superior to the control device without Ta-assisted crystallization. The reason for this high performance is discussed on basis of the lattice ordering and chemical purification of IZTO channel layer. Existence of two dimensional grain’ boundary defects as a crystallization of IZTO channel layer was found to hardly affect the charge carrier transport, suggesting that they are electrically inactive.
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