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Nanofluidic channels with integrated charge sensors and methods based thereon

机译:具有集成电荷传感器的纳米流体通道及其基于方法

摘要

An electrical detector is provided that comprises a nanofluidic channel with an integrated nanoscale charge sensor. The charge sensor can be an unfunctionalized nanowire, nanotube, transistor or capacitor and can be of carbon, silicon, carbon/silicon or other semiconducting material. The nanofluidic channel depth is on the order of the Debye screening length. Methods are also provided for detecting charged molecules or biological or chemical species with the electrical detector. Charged molecules or species in solution are driven through the nanofluidic channel of the electrical detector and contact the charge sensor, thereby producing a detectable signal. Methods are also provided for detecting a local solution potential of interest. A solution flowing through the nanofluidic channel of the electrical detector contacts the charge sensor, thereby producing a detectable local solution potential signal.
机译:提供了一种电探测器,其包括具有集成的纳米级电荷传感器的纳米流体通道。电荷传感器可以是未功能化的纳米线,纳米管,晶体管或电容器,并且可以是碳,硅,碳/硅或其他半导体材料。纳米流体通道深度约为德拜筛选长度。还提供了利用电检测器检测带电分子或生物或化学种类的方法。溶液中的带电分子或物质被驱动通过电检测器的纳米流体通道并与电荷传感器接触,从而产生可检测的信号。还提供了用于检测感兴趣的局部溶液潜力的方法。流过电检测器的纳米流体通道的溶液与电荷传感器接触,从而产生可检测的局部溶液电势信号。

著录项

  • 公开/公告号US10670559B2

    专利类型

  • 公开/公告日2020-06-02

    原文格式PDF

  • 申请/专利权人 JOHN T. MANNION;HAROLD G. CRAIGHEAD;

    申请/专利号US200913003490

  • 发明设计人 JOHN T. MANNION;HAROLD G. CRAIGHEAD;

    申请日2009-07-09

  • 分类号H01L29/66;G01N27/447;G01N33/487;B82Y30;B01L3;G01N27/414;

  • 国家 US

  • 入库时间 2022-08-21 11:28:29

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