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Bipolar Conduction in Tin-Oxide Semiconductor Channel Treated by Oxygen Plasma for Low-Power Thin-Film Transistor Application
Journal article

Bipolar Conduction in Tin-Oxide Semiconductor Channel Treated by Oxygen Plasma for Low-Power Thin-Film Transistor Application

Po-Chun Chen, Yung-Hsien Wu, Zhi-Wei Zheng, Yu-Chien Chiu, Chun-Hu Cheng, Shiang-Shiou Yen, Hsiao-Hsuan Hsu and Chun-Yen Chang
Journal of Display Technology, Vol.12(3), pp.224-227
01/03/2016

Abstract

Bipolar oxygen plasma treatment thin-film transistor (TFT) tin-monoxide (SnO)
In this paper, we investigated the bipolar conduction mechanism in thin-film transistors (TFTs) with oxygen plasma treatment on tin-oxide channel. The optimized p-type thin-oxide TFTs showed an on/off ratio of >10 <sup>4</sup> , a threshold voltage of -1.05 V, and a field-effect mobility of 2.14 cm <sup>2</sup> · V <sup>-1</sup> · s <sup>-1</sup> . By increasing the exposure time of oxygen plasma, excess oxygen was incorporated to thin-oxide channel and converted thin monoxide to oxygen-rich n-type thin dioxide, which in turn led to n-type operation. It indicated that oxygen plasma was the critical factor to determine oxygen concentration, oxygen vacancies, metal ions and channel polarity. This proposed oxygen-content tuning through plasma treatment approach shows great promise in simplification of TFT process that can achieve n-type and p-type TFTs under the same device process.

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