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A self-powered biosensing device with an integrated hybrid biofuel cell for intermittent monitoring of analytes

机译:具有集成混合生物燃料电池的自动生物传感装置,用于间歇监测分析物

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摘要

AbstractIn this work, we propose an integrated self-powered sensing system, driven by a hybrid biofuel cell (HBFC) with carbon paper discs coated with multiwalled carbon nanotubes. The sensing system has a biocathode made from laccase or bilirubin oxidase, and the anode is made from a zinc plate. The system includes a dedicated custom-built electronic control unit for the detection of oxygen and catechol analytes, which are central to medical and environmental applications. Both the HBFC and sensors, operate in a mediatorless direct electron transfer mode. The measured characteristics of the HBFC with externally applied resistance included the power-time dependencies under flow cell conditions, the sensors performance (evaluated by cyclic voltammetry), and chronoamperometry. The HBFC is integrated with analytical devices and operating in a pulse mode form long-run monitoring experiments. The HBFC generated sufficient power for wireless data transmission to a local computer.Highlights?Integrated self-powered sensing system for oxygen and catechol is described.?The biofuel cell operates in pulse mode with sequential active and regenerative phases.
机译:<![cdata [ 抽象 在这项工作中,我们提出了一个集成的自动传感系统,由混合生物燃料电池(HBFC)驱动,碳纸盘涂有多壁的碳纸盘碳纳米管。传感系统具有由漆酶或胆红素氧化酶制成的生物疗法,并且阳极由锌板制成。该系统包括用于检测氧和儿茶酚分析物的专用定制的电子控制单元,这些电子控制单元是医疗和环境应用的核心。 HBFC和传感器都以中介直接电子传输模式运行。具有外部施加电阻的HBFC的测量特性包括在流动细胞条件下的功率时间依赖性,传感器性能(通过循环伏安法评估)和计时率。 HBFC与分析装置集成并以脉冲模式操作,形成长期监测实验。 HBFC为本地计算机产生了足够的无线数据传输的动力。 突出显示 描述了用于氧气和儿茶酚的集成自动传感系统。 生物燃料单元以脉冲模式运行,具有顺序有源和再生阶段。

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