Optimization of the measurement time of a Room Temperature Ionic Liquids based electronic nose
Optimization of the measurement time of a Room Temperature Ionic Liquids based electronic nose
カテゴリ: 研究会(論文単位)
論文No: CHS20002,BMS20002
グループ名: 【E】センサ・マイクロマシン部門 ケミカルセンサ/【E】センサ・マイクロマシン部門 バイオ・マイクロシステム合同研究会
発行日: 2020/03/19
タイトル(英語): Optimization of the measurement time of a Room Temperature Ionic Liquids based electronic nose
著者名: Aleixandre Manuel(Tokyo Institute of Technology),中本 高道(Tokyo Institute of Technology)
著者名(英語): Manuel Aleixandre(Tokyo Institute of Technology),Takamichi Nakamoto(Tokyo Institute of Technology)
キーワード: Gas sensor|Room Temperature Ionic Liquid|Quartz Crystal Microbalance|Electronic Nose|Gas sensor|Room Temperature Ionic Liquid|Quartz Crystal Microbalance|Electronic Nose
要約(日本語): Twenty-eight sensing materials for Quartz Crystal Microbalance (QCM) gas sensors were studied. Five QCM sensors were coated with materials used as stationary phases in gas chromatography and twenty-three sensors were coated in different Room Temperature Ionic Liquids (RTIL). An algorithm was designed to determine the best four sensors and the best measurement time that maximized the separation power. A combination of RTIL and conventional films maximized the separation power. Also, optimal separation power was achieved before the final sensor steady-state.
要約(英語): Twenty-eight sensing materials for Quartz Crystal Microbalance (QCM) gas sensors were studied. Five QCM sensors were coated with materials used as stationary phases in gas chromatography and twenty-three sensors were coated in different Room Temperature Ionic Liquids (RTIL). An algorithm was designed to determine the best four sensors and the best measurement time that maximized the separation power. A combination of RTIL and conventional films maximized the separation power. Also, optimal separation power was achieved before the final sensor steady-state.
原稿種別: 英語
PDFファイルサイズ: 1,658 Kバイト
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