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Highly Sensitive Membrane-Based Pressure Sensors (MePS) for Real-Time Monitoring of Catalytic Reactions

机译:基于敏感的膜的压力传感器(MEPS),用于实时监测催化反应

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摘要

Functional, flexible, and integrated lab-on-chips, based on elastic membranes, are capable of fine response to external stimuli, so to pave the way for many applications as multiplexed sensors for a wide range of chemical, physical and biomedical processes. Here, we report on the use of elastic thin membranes (TMs), integrated with a reaction chamber, to fabricate a membrane-based pressure sensor (MePS) for reaction monitoring. In particular, the TM becomes the key-element in the design of a highly sensitive MePS capable to monitor gaseous species production in dynamic and temporally fast processes with high resolution and reproducibility. Indeed, we demonstrate the use of a functional MePS integrating a 2 pm thick polydimethylsiloxane TM by monitoring the dioxygen evolution resulting from catalytic hydrogen peroxide dismutation. The operation of the membrane, explained using a diffusion-dominated model, is demonstrated on two similar catalytic systems with catalase-like activity, assembled into polyelectrolyte multilayers capsules. The MePS, tested in a range between 2 and 50 Pa, allows detecting a dioxygen variation of the mu mol L-1 s(-1) order. Due to their structural features, flexibility of integration, and biocompatibility, the MePSs are amenable of future development within advanced lab-on-chips.
机译:基于弹性膜的功能,柔性和集成的实验室内芯片能够对外部刺激的微量反应,从而为许多应用为多路复用传感器铺平道路,用于各种化学,物理和生物医学过程。这里,我们报告使用与反应室集成的弹性薄膜(TMS)的用途,以制造用于反应监测的基于膜的压力传感器(MEP)。特别地,TM成为设计高度敏感MEP的关键元素,能够以高分辨率和再现性监测动态和时间快速过程中的气态物种生产。实际上,我们证明了通过监测由催化氢过氧化物歧化产生的二恶英进化来整合2pm厚聚二甲基硅氧烷Tm的功能MEP。使用扩散束型模型解释的膜的操作在两种类似的催化系统上证明了具有过氧化氢酶的活性的催化系统,组装成聚电解质多层胶囊。在2和50Pa的范围内测试的MEPS允许检测MU MOL L-1 S(-1)顺序的DIOxygen变化。由于它们的结构特征,集成灵活性和生物相容性,MEPSS在先进的实验室内的未来开发中可供选择。

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  • 来源
    《Analytical chemistry》 |2018年第12期|共7页
  • 作者单位

    CNR NANOTEC Inst Nanotechnol Campus Ecotekne Via Monteroni I-73100 Lecce Italy;

    CNR NANOTEC Inst Nanotechnol Campus Ecotekne Via Monteroni I-73100 Lecce Italy;

    CNR NANOTEC Inst Nanotechnol Campus Ecotekne Via Monteroni I-73100 Lecce Italy;

    Univ Padua ITM CNR Via Marzolo 1 I-35131 Padua Italy;

    Univ Padua ITM CNR Via Marzolo 1 I-35131 Padua Italy;

    Univ Salento Dept Math &

    Phys E De Giorgi I-73100 Lecce Italy;

    CNR NANOTEC Inst Nanotechnol Campus Ecotekne Via Monteroni I-73100 Lecce Italy;

    S De Bellis Res Hosp Natl Inst Gastroenterol Via Turi 27 I-70013 Castellana Grotte Bari Italy;

    Univ Padua ITM CNR Via Marzolo 1 I-35131 Padua Italy;

    Univ Salento Dept Math &

    Phys E De Giorgi I-73100 Lecce Italy;

    Sapienza Univ Dept Phys SLiM Lab CNR NANOTEC Inst Nanotechnol Ple A Moro 5 I-00185 Rome Italy;

    CNR NANOTEC Inst Nanotechnol Campus Ecotekne Via Monteroni I-73100 Lecce Italy;

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  • 正文语种 eng
  • 中图分类 分析化学;
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