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Nanopore with Transverse Nanoelectrodes for Electrical Characterization and Sequencing of DNA

机译:带有横向纳米电极的纳米孔用于DNA的电表征和测序

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摘要

A DNA sequencing device which integrates transverse conducting electrodes for the measurement of electrode currents during DNA translocation through a nanopore has been nanofabricated and characterized. A focused electron beam (FEB) milling technique, capable of creating features on the order of 1 nm in diameter, was used to create the nanopore. The device was characterized electrically using gold nanoparticles as an artificial analyte with both DC and AC measurement methods. Single nanoparticle/electrode interaction events were recorded. A low-noise, high-speed transimpedance current amplifier for the detection of nano to picoampere currents at microsecond time scales was designed, fabricated and tested for future integration with the nanopore device.
机译:纳米制造和表征了一种DNA测序仪,该器件集成了横向导电电极,可用于在DNA转运通过纳米孔期间测量电极电流。聚焦电子束(FEB)铣削技术可产生直径约1 nm的特征,用于制造纳米孔。使用金纳米颗粒作为人工分析物通过直流和交流测量方法对设备进行电学表征。记录单个纳米颗粒/电极相互作用事件。设计,制造和测试了一种低噪声,高速跨阻电流放大器,用于在微秒级的时间范围内检测纳米至皮安电流,以便将来与纳米孔器件集成。

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