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NANOPORE WITH TRANSVERSE NANOELECTRODES FOR ELECTRICAL CHARACTERIZATION AND SEQUENCING OF DNA

机译:具有横向纳米电极的纳米孔,用于电气表征和DNA测序

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Nanopore DNA sequencing devices show promise for rapidly decoding genetic information, although single nucleotide detection appears to be beyond the sensitivity of present transmembrane current measurement schemes. In this paper, a nanodevice combining nanoelectrodes with a nanopore was made to measure the nucleotide dependent transverse tunneling currents during the translocation of DNA through the nanopore. A custom high speed, low noise, integrated circuit current amplifier was designed and fabricated to measure the tunneling current. This nanodevice was characterized electrically using 2nm to 20nm gold nanoparticles as an artificial construct for DNA using both DC and AC detection schemes. Measured transverse tunneling currents were found to be quantized, probably according to the number of nanoparticles residing within the pore.
机译:纳米孔DNA测序装置显示快速解码遗传信息的承诺,尽管单核苷酸检测似乎超出了本跨膜电流测量方案的灵敏度。在本文中,使纳米电极组合具有纳米孔的纳米电极,以测量DNA通过纳米孔易位期间的核苷酸依赖性隧道电流。设计并制造了定制高速,低噪音,集成电路电流放大器,以测量隧道电流。该纳米型以使用2NM至20nm金纳米颗粒在使用2NM至20nm的金纳米粒子的表征,作为使用DC和AC检测方案的DNA的人工构建体。发现测量的横向隧穿电流被定量化,可能根据覆盖在孔内的纳米粒子的数量。

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