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Conductivity-Based Detection Techniques in Nanofluidic Devices

机译:纳米流体设备中基于电导率的检测技术

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摘要

This review covers conductivity detection in fabricated nanochannels and nanopores. Improvements in nanoscale sensing are a direct result of advances in fabrication techniques, which produce devices with channels and pores with reproducible dimensions and in a variety of materials. Analytes of interest are detected by measuring changes in conductance as the analyte accumulates in the channel or passes transiently through the pore. These detection methods take advantage of phenomena enhanced at the nanoscale, such as ion current rectification, surface conductance, and dimensions comparable to the analytes of interest. The end result is the development of sensing technologies for a broad range of analytes, e.g., ions, small molecules, proteins, nucleic acids, and particles.
机译:这项审查涵盖电导率检测在制造的纳米通道和纳米孔。纳米级传感技术的改进是制造技术进步的直接结果,该技术可以生产出具有可重现尺寸和多种材料的具有通道和孔的设备。通过分析当分析物积聚在通道中或瞬时通过孔时的电导变化来检测目标分析物。这些检测方法利用了纳米级增强的现象,例如离子电流整流,表面电导和可与目标分析物相比的尺寸。最终结果是开发了适用于各种分析物(例如离子,小分子,蛋白质,核酸和颗粒)的传感技术。

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