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Solid-state nanopores fabricated by pulse-controlled dielectric breakdown

机译:通过脉冲控制介电击穿制备的固态纳米孔

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This article describes a promising technique to fabricate individual solid-state nanopores directly on dielectric membranes by using adjustable pulses controlled dielectric breakdown in electrolyte. The pulse parameters are adjustable with the running of fabrication process, which is suitable for various thickness and material of the membrane and control precision with sub-nanometer. Moreover, double-stranded DNA translocations through the reliable nanopores fabricated in this manner were successfully demonstrated, exhibiting excellent electrical signals and long DNA translocation times with high signal-to-noise ratio. This economical and timesaving method shows enormous promise for the manufacturing of future nanopore-based technologies and lays the foundation for future research in the field of single molecule detection.
机译:本文介绍了一种有前途的技术,可通过在电解质中使用可调脉冲控制电介质击穿,在电介质膜上直接制造单个固态纳米孔。脉冲参数可随制造过程的进行调整,适用于各种厚度和材料的膜,并具有亚纳米级的控制精度。此外,通过以这种方式制造的可靠的纳米孔成功地证明了双链DNA易位,显示出优异的电信号和长的DNA易位时间,且信噪比高。这种经济,省时的方法为未来基于纳米孔的技术的制造显示出巨大的希望,并为单分子检测领域的未来研究奠定了基础。

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