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Nanoscale Electrochemical Sensing and Processing in Microreactors

机译:纳米级电化学传感与微反应器加工

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摘要

In this review, we summarize recent advances in nanoscale electrochemistry, including the use of nanoparticles, carbon nanomaterials, and nanowires. Exciting developments are reported for nanoscale redox cycling devices, which can chemically amplify signal readout. We also discuss promising high-frequency techniques such as nanocapacitive CMOS sensor arrays or heterodyning. In addition, we review electrochemical microreactors for use in (drug) synthesis, biocatalysis, water treatment, or to electrochemically degrade urea for use in a portable artificial kidney. Electrochemical microreactors are also used in combination with mass spectrometry, e.g., to study the mimicry of drug metabolism or to allow electrochemical protein digestion. The review concludes with an outlook on future perspectives in both nanoscale electrochemical sensing and electrochemical microreactors. For sensors, we see a future in wearables and the Internet of Things. In microreactors, a future goal is to monitor the electrochemical conversions more precisely or ultimately in situ by combining other spectroscopic techniques.
机译:在本文中,我们总结了纳米级电化学的最近进展,包括使用纳米颗粒,碳纳米材料和纳米线。据报道,纳米级氧化还原循环装置据报道了令人兴奋的开发,其可以化学放大信号读数。我们还讨论了有前途的高频技术,例如纳米涂释CMOS传感器阵列或异差。此外,我们审查了用于(药物)合成,生物分析,水处理的电化学微反应器,或用于在便携式人工肾中使用的电化学降解尿素。电化学微反应器也与质谱组合使用,例如,研究药物代谢的模仿或允许电化学蛋白质消化。审查总结了纳米级电化学传感和电化学微反应器的未来观点的展望。对于传感器,我们看到了可穿戴物和物联网的未来。在微反应器中,未来的目标是通过组合其他光谱技术更精确地或最终地监测电化学转换。

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