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Fabrication and characterization of nanopores with insulated transverse nanoelectrodes for DNA sensing in salt solution

机译:纳米孔与绝缘横纳米电极进行纳米孔的制造与表征在盐溶液中DNA感测

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摘要

We report on the fabrication, simulation, and characterization of insulated nanoelectrodes aligned with nanopores in low-capacitance silicon nitride membrane chips. We are exploring these devices for the transverse sensing of DNA molecules as they are electrophoretically driven through the nanopore in a linear fashion. While we are currently working with relatively large nanopores (6–12 nm in diameter) to demonstrate the transverse detection of DNA, our ultimate goal is to reduce the size sufficiently to resolve individual nucleotide bases, thus sequencing DNA as it passes through the pore. We present simulations and experiments that study the impact of insulating these electrodes, which is important to localize the sensing region. We test whether the presence of nanoelectrodes or insulation affects the stability of the ionic current flowing through the nanopore, or the characteristics of DNA translocation. Finally, we summarize the common device failures and challenges encountered during fabrication and experiments, explore the causes of these failures, and make suggestions on how to overcome them in the future.
机译:我们报告了与低电容氮化硅膜芯片中的纳米孔对准的绝缘纳米电极的制造,模拟和表征。我们正在探索这些用于横向检测DNA分子的设备,因为它们以线性方式通过纳米孔被电泳驱动。虽然我们目前正在使用相对较大的纳米孔(直径6至12 nm)来证明DNA的横向检测,但我们的最终目标是减小大小以分辨单个核苷酸碱基,从而对DNA穿过孔进行测序。我们提供了模拟和实验,研究了绝缘这些电极的影响,这对于定位感应区域很重要。我们测试纳米电极或绝缘的存在是否会影响流过纳米孔的离子电流的稳定性或DNA易位的特性。最后,我们总结了在制造和实验过程中遇到的常见设备故障和挑战,探讨了这些故障的原因,并就如何克服这些故障提出了建议。

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