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Ag nanotubes and Ag/AgCl electrodes in nanoporous membranes

机译:纳米多孔膜中的Ag纳米管和Ag / AgCl电极

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摘要

Miniaturization of the entire experimental setup is a key requirement for widespread application of nanodevices. For nanopore biosensing, integrating electrodes onto the nanopore membrane and controlling the pore length is important for reducing the complexity and improving the sensitivity of the system. Here we present a method to achieve these goals, which relies on electroless plating to produce Ag nanotubes in track-etched polymer nanopore templates. By plating from one side only, we create a conductive nanotube that does not span the full length of the pore, and thus can act as a nanoelectrode located inside the nanopore. To give optimal electrochemical behavior for sensing, we coat the Ag nanotube with a layer of AgCl. We characterize the behavior of this nanoelectrode by measuring its current-voltage response and find that, in most cases, the response is asymmetric. The plated nanopores have initial diameters between 100 and 300nm, thus a range suitable for detection of viruses.
机译:整个实验装置的小型化是纳米器件广泛应用的关键要求。对于纳米孔生物传感,将电极集成到纳米孔膜上并控制孔径对于降低系统的复杂性和提高系统灵敏度非常重要。在这里,我们提出了一种实现这些目标的方法,该方法依靠化学镀在轨迹蚀刻的聚合物纳米孔模板中生产Ag纳米管。通过仅从一侧进行镀覆,我们创建了不覆盖孔全长的导电纳米管,因此可以充当位于纳米孔内部的纳米电极。为了给传感提供最佳的电化学行为,我们在Ag纳米管上覆盖了一层AgCl。我们通过测量纳米电极的电流-电压响应来表征其行为,发现在大多数情况下,该响应是不对称的。镀的纳米孔的初始直径在100至300nm之间,因此适合检测病毒。

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