Enhancing electrical performance and stability of nanometer-thin ITO transistors via thermally oxidized alumina passivation layer

Author:

Gao Qingguo1ORCID,Cao Tianfan1ORCID,Li Jiabing1,Chi Feng1ORCID,Liu Liming1ORCID,Liu Ping1

Affiliation:

1. School of Electronic Information, Zhongshan Institute, University of Electronic Science and Technology of China , Zhongshan 528402, China

Abstract

In this study, we investigated the utilization of alumina (AlOx), formed through the oxidation of thermally evaporated aluminum, as a passivation layer for nanometer-thin indium-tin-oxide (ITO) transistors. The ITO transistors passivated with thermally oxidized AlOx passivation exhibited remarkable electrical properties, with an average field-effect mobility of 241 cm2/Vs, significantly higher than the 40 cm2/Vs observed for devices without the AlOx passivation layer. Moreover, the passivated transistors maintained a high on/off current ratio at 108 level. In addition, the passivated transistors demonstrated improved stability, with a decrease in the threshold voltage (Vth) shift under negative bias stress testing conducted over 3600 seconds. The ITO transistors also displayed better air-ambient stability compared to transistors without the AlOx passivation layer. These results demonstrate the potential application of alumina passivation in nanometer-thin ITO field-effect transistors.

Funder

National Natural Science Foundation of China

Guangdong Basic and Applied Basic Research Foundation

Key Scientific Research Project of the Department of Education of Guangdong Province

Zhongshan Social Public Welfare Science and Technology

Publisher

AIP Publishing

Subject

General Physics and Astronomy

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1. High-performance nano-scale InSnO transistors;Japanese Journal of Applied Physics;2024-01-10

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