分子鋳型ポリマーを修飾した有機トランジスタ型アレイによる呈味成分の網羅的検出

项目来源

日本学术振兴会基金(JSPS)

项目主持人

南 豪

项目受资助机构

東京大学

项目编号

24K01315

立项年度

2024

立项时间

未公开

项目级别

国家级

研究期限

未知 / 未知

受资助金额

18590000.00日元

学科

ナノマイクロシステム関連

学科代码

未公开

基金类别

基盤研究(B)

关键词

分子鋳型ポリマー ; 有機トランジスタ ; センサアレイ ; 分子認識 ; パターン認識 ;

参与者

未公开

参与机构

未公开

项目标书摘要:Outline of Research at the Start:本研究では、異なる濃度範囲で存在する多種多様な呈味成分に対する定性・定量分析を達成するために、分子認識化学、ナノ材料工学、高分子化学、有機エレクトロニクスに跨る学際研究に立脚した化学センサデバイスの開発を行う。

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  • 1.Printed paper-based optical sensor array devices

    • 关键词:
    • Digital devices;Explosives detection;Fiber optic sensors;Optical character recognition;Typewriters;Array devices;Imaging analysis;Multi-sensing;Optical response;Optical sensor arrays;Optical-;Paper substrate;Printed papers;Sensor platform;Sensors array
    • Minami, Tsuyoshi
    • 《Frontiers in Biological Detection: From Nanosensors to Systems XVII 2025》
    • 2025年
    • January 25, 2025 - January 27, 2025
    • San Francisco, CA, United states
    • 会议

    Paper substrates have been widely used as chemical sensor platforms owing to their eco-friendliness and high processability. Conventional paper-based analytical devices allow single analyte detection, whereas real samples contain multiple analytes at wide concentration ranges. Although multi-sensing devices are required in real-world scenarios, the realization is still challenging. Motivated by this, the author has developed paper-based sensor array devices for multi-sensing. In this regard, cross-reactive optical sensors are appropriate elements to achieve both qualitative and quantitative detection based on pattern recognition. Such cross-reactive chemical sensors on an array show various optical responses on a paper substrate upon the addition of different analytes. The optical sensor elements can be uniformly printed on the paper substrate using office apparatuses. In addition, optical responses of the paper substrate embedded with cross-reactive sensors are rapidly detected using digital recorders, followed by data processing using imaging analysis and pattern recognition techniques. Therefore, paper-based sensor array devices allow not only the simultaneous detection of multiple chemical information but also accurate analysis comparable to stational analytical methods. Herein, the author shows appropriate designs of paper-based sensor array devices and their applicability for real-sample analysis. © 2025 SPIE.

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