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首页> 外文期刊>Sensors and Actuators. B, Chemical >A simple on-chip self-diagnosis/self-calibration method of oxygen microsensor using electrochemically generated bubbles
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A simple on-chip self-diagnosis/self-calibration method of oxygen microsensor using electrochemically generated bubbles

机译:一种使用电化学产生的气泡的氧气微传感器的简单片上自诊断/自校准方法

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摘要

An on-demand in situ self-diagnosis and self-calibration of biochemical sensors is indispensable for continuous and reliable monitoring. An on-chip electrochemical actuation method (water electrolysis) was employed to achieve this novel functionality. A simple fluidics chip including a polydimethylsiloxan (PDMS) channel layer and platinum actuation electrodes was designed and fabricated. The performance of this system was evaluated in combination with a commercial fiber optic oxygen sensor. The results obtained from the fluidics chip were compared to those obtained from a solution phase and a dry gas phase and the influence of water vapor and internal pressure was discussed. This method is expected to enable an on-demand in situ self-diagnosis and self-calibration of oxygen microsensor during real-time monitoring and to lead to an integrated system with on-chip, built-in intelligence.
机译:生化传感器的按需就地自诊断和自校准对于连续和可靠的监视是必不可少的。片上电化学驱动方法(水电解)被用来实现这种新颖的功能。设计并制造了包括聚二甲基硅氧烷(PDMS)通道层和铂致动电极的简单流控芯片。结合商用光纤氧气传感器评估了该系统的性能。将流控芯片获得的结果与溶液相和干燥气相获得的结果进行了比较,并讨论了水蒸气和内部压力的影响。该方法有望在实时监测过程中实现对氧气微传感器的按需现场自我诊断和自校准,并导致具有片上内置智能的集成系统。

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