DocumentCode :
982879
Title :
Bottom-Gate Zinc Oxide Thin-Film Transistors (ZnO TFTs) for AM-LCDs
Author :
Hirao, Takashi ; Furuta, Mamoru ; Hiramatsu, Takahiro ; Matsuda, Tokiyoshi ; Li, Chaoyang ; Furuta, Hiroshi ; Hokari, Hitoshi ; Yoshida, Motohiko ; Ishii, Hiromitsu ; Kakegawa, Masayuki
Author_Institution :
Res. Inst. for Nanodevices, Kochi Univ. of Technol., Kami
Volume :
55
Issue :
11
fYear :
2008
Firstpage :
3136
Lastpage :
3142
Abstract :
In this paper, high-performance bottom-gate thin-film transistors (TFTs) with transparent zinc oxide (ZnO) channels have been developed. The ZnO film for active channels was deposited by RF magnetron sputtering. The crystallinity of the ZnO film drastically improved when it was deposited on a doublelayer SiOx/SiNx gate insulator. In order to achieve a ZnO TFT back-plane for liquid-crystal display (LCD) with the required pattern accuracy, dry etching of the ZnO film in an Ar and CH4 chemistry has been developed. The etching rate and tapered profile of the ZnO film could be controlled by the Ar content in the etching gases of Ar and CH4. The saturation mobility (musat) of the ZnO TFT strongly depended on a gate voltage. A musat of 5.2 & cm2 .(V .s)-1 at VGS = 40 V and VDS = 10 V, and an on/off-current ratio of 2.7 x 107 were obtained. A drain-current uniformity of plusmn7% was achieved within a radius of 20 mm from the substrate center. A 1.46 -in diagonal LCD with 61 600 pixels has been driven by the ZnO-TFT back-plane. A moving picture image was available on fabricated LCD driven by the ZnO TFTs.
Keywords :
argon; carbon compounds; etching; liquid crystal displays; silicon compounds; sputtering; thin film transistors; zinc compounds; AM-LCD; Ar; CH4; RF magnetron sputtering; SiO-SiN; ZnO; bottom-gate thin-film transistors; gate insulator; liquid-crystal display; saturation mobility; was active channels; Argon; Crystallization; Etching; Insulation; Radio frequency; Saturation magnetization; Silicon compounds; Sputtering; Thin film transistors; Zinc oxide; Dry etching; liquid-crystal display (LCD); sputtering; thin-film transistors (TFTs); zinc oxide (ZnO);
fLanguage :
English
Journal_Title :
Electron Devices, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9383
Type :
jour
DOI :
10.1109/TED.2008.2003330
Filename :
4668579
Link To Document :
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