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Suppression of Interfacial Disorders in Solution-Processed Metal Oxide Thin-Film Transistors by Mg Doping
- Heo J.S.;
- Jeon S.-P.;
- Kim I.;
- Lee W.;
- Kim Y.-H.;
- ... Park, Sung Kyu
WEB OF SCIENCE
24SCOPUS
23초록
The fabrication of high-performance metal oxide thin-film transistors (TFTs) using a low-temperature solution process may facilitate the realization of ultraflexible and wearable electronic devices. However, the development of highly stable oxide gate dielectrics at a low temperature has been a challenging issue since a considerable amount of residual impurities and defective bonding states is present in low-temperature-processed gate dielectrics causing a large counterclockwise hysteresis and a significant instability. Here, we report a new approach to effectively remove the residual impurities and suppress the relevant dipole disorder in a low-temperature-processed (180 °C) AlOxgate dielectric layer by magnesium (Mg) doping. Mg is well known as a promising material for suppression of oxygen vacancy defects and improvement of operational stability due to a high oxygen vacancy formation energy (Evo= 9.8 eV) and a low standard reduction potential (E0 =-2.38 V). Therefore, with an adequate control of Mg concentration in metal oxide (MO) films, oxygen-related defects could be easily suppressed without additional treatments and then stable metal-oxygen-metal (M-O-M) network formation could be achieved, causing excellent operational stability. By optimal Mg doping (10%) in the InOxchannel layer, Mg:InOxTFTs exhibited negligible clockwise hysteresis and a field-effect mobility of >4 cm2 V-1 s-1. Furthermore, the electric characteristics of the low-temperature-processed AlOxgate dielectric with high impurities were improved by Mg diffusion originating in Mg doping, resulting in stable threshold voltage shift in the bias stability test. Copyright © 2019 American Chemical Society.
키워드
- 제목
- Suppression of Interfacial Disorders in Solution-Processed Metal Oxide Thin-Film Transistors by Mg Doping
- 저자
- Heo J.S.; Jeon S.-P.; Kim I.; Lee W.; Kim Y.-H.; Park, Sung Kyu
- 발행일
- 2019-12
- 유형
- Article
- 권
- 11
- 호
- 51
- 페이지
- 48054 ~ 48061
- 언어
- ENG
- 출판사
- American Chemical Society
- 발행국가
- 미국
- 분량
- 8 페이지
- ISSN
- E 1944-8252
P 1944-8244