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Self-Aligned Top-Gate Amorphous Indium Zinc Oxide Thin-Film Transistors Exceeding Low-Temperature Poly-Si Transistor Performance

Authors
Park, Jae ChulLee, Ho-NyeonIm, Seongil
Issue Date
14-Aug-2013
Publisher
American Chemical Society
Keywords
self-aligned top-gate structure; amorphous indium zinc oxide; thin-film transistor; N2O plasma treatment; Ar plasma treatment
Citation
ACS Applied Materials & Interfaces, v.5, no.15, pp 6990 - 6995
Pages
6
Journal Title
ACS Applied Materials & Interfaces
Volume
5
Number
15
Start Page
6990
End Page
6995
URI
https://scholarworks.bwise.kr/sch/handle/2021.sw.sch/13438
DOI
10.1021/am401128p
ISSN
1944-8244
1944-8252
Abstract
Thin-film transistor (TFT) is a key component of active-matrix flat-panel displays (AMFPDs). These days, the low-temperature poly silicon (LTPS) TFTs are to match with advanced AMFPDs such as the active matrix organic light-emitting diode (AMOLED) display, because of their high mobility for fast pixel switching. However, the manufacturing process of LTPS TFT is quite complicated, costly, and scale-limited. Amorphous oxide semiconductor (AOS) TFT technology is another candidate, which is as simple as that of conventioanl amorphous (a)-Si TFTs in fabrication but provides much superior device performances to those of a-Si TFTs. Hence, various AOSs have been compared with LTPS for active channel layer of the advanced TFTs, but have always been found to be relatively inferior to LTPS. In the present work, we clear the persistent inferiority, innovating the device performaces of a-IZO TFT by adopting a self-aligned coplanar top-gate structure and modifying the surface of a-IZO material. Herein, we demonstrate a high-performance simple-processed a-IZO TFT with mobility of similar to 157 cm(2) V-1 s(-1), SS of similar to 190 mV dec(-1), and good bias/photostabilities, which overall surpass the performances of high-cost LTPS TFTs.
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