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InZnO TFT CO2ガスセンサーにおけるZn組成比の影響

InZnO TFT CO2ガスセンサーにおけるZn組成比の影響

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カテゴリ: 論文誌(論文単位)

グループ名: 【C】電子・情報・システム部門

発行日: 2024/11/01

タイトル(英語): Effect of Zn Composition Ratio in InZnO TFT CO2 Gas Sensor

著者名: 野寺 歩夢(工学院大学),小林 亮太(工学院大学),小林 翔(工学院大学),相川 慎也(工学院大学)

著者名(英語): Ayumu Nodera (Kogakuin University), Ryota Kobayashi (Kogakuin University), Tsubasa Kobayashi (Kogakuin University), Shinya Aikawa (Kogakuin University)

キーワード: In2O3,ZnO,酸化物半導体,薄膜トランジスタ,ガスセンサー,CO2  In2O3,ZnO,oxide semiconductor,thin film transistor,gas sensor,CO2

要約(英語): CO2 sensor device using thin film transistor (TFT) structure is attracting attention from the viewpoint of gas sensitivity and low power consumption because CO2 monitoring everywhere is required in various fields. Oxide semiconductors are used as its channel material, however, the correlation between electrical properties of oxide thin film and gas sensitivity in TFT-type gas sensor has not been clarified, thus far. In this study, we fabricated InZnO TFTs with different composition ratios of In2O3 and ZnO, and investigated the influence of their electrical properties on CO2 sensitivity. In terms of the TFT properties, InZnO with a Zn content of 31% showed the best field-effect mobility. This is because the addition of Zn generated more oxygen vacancy and increased carrier density. On the other hand, further increasing Zn content, the electrical properties deteriorated compared to non-doped In2O3 and the maximum activation energy increased. For CO2 sensing, the sensitivity improved as the Zn composition ratio decreased, and thus the non-doped In2O3 TFT showed the highest performance. We believe that adsorption of gas molecules becomes more effective when an oxide semiconductor film has both smaller activation energy and moderately high carrier density.

本誌: 電気学会論文誌C(電子・情報・システム部門誌) Vol.144 No.11 (2024) 特集Ⅰ:電気関係学会関西連合大会 特集Ⅱ:電子材料関連技術の最近の進展

本誌掲載ページ: 1086-1092 p

原稿種別: 論文/日本語

電子版へのリンク: https://www.jstage.jst.go.jp/article/ieejeiss/144/11/144_1086/_article/-char/ja/

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