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Precise control of the size and noise of solid-state nanopores using high electric fields

机译:使用高电场精确控制固态纳米孔的大小和噪声

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摘要

We present a methodology for preparing silicon nitride nanopores that provides in situ control of size with sub-nanometer precision while simultaneously reducing electrical noise by up to three orders of magnitude through the cyclic application of high electric fields in an aqueous environment. Over 90% of nanopores treated with this technique display desirable noise characteristics and readily exhibit translocation of double-stranded DNA molecules. Furthermore, previously used nanopores with degraded electrical properties can be rejuvenated and used for further single-molecule experiments.
机译:我们提出了一种制备氮化硅纳米孔的方法,该方法可在亚纳米精度下提供尺寸的原位控制,同时通过在水性环境中循环施加高电场,同时将电噪声降低多达三个数量级。超过90%的用这种技术处理过的纳米孔显示出所需的噪声特征,并易于表现出双链DNA分子的易位。此外,先前使用的具有降低的电性能的纳米孔可以被再生并用于进一步的单分子实验。

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