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Interpreting the Conductance Blockades of DNA Translocations through Solid-State Nanopores

机译:解释通过固态纳米孔的DNA易位的电导阻滞

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摘要

Solid-state nanopore electrical signatures can be convoluted and are thus challenging to interpret. In order to better understand the origin of these conductance changes, we investigate the translocation of DNA through small, thin pores over a range of voltage. We observe multiple, discrete populations of conductance blockades that vary with applied voltage. To describe our observations, we develop a simple model that is applicable to solid-state nanopores generally. These results represent an important step toward understanding the dynamics of the electrokinetic translocation process.
机译:固态纳米孔电签名可能会令人费解,因此难以解释。为了更好地了解这些电导变化的起源,我们研究了在一定电压范围内DNA通过小而细的孔的移位。我们观察到多个离散的电导阻塞群,它们随施加的电压而变化。为了描述我们的观察,我们开发了一个简单的模型,该模型通常适用于固态纳米孔。这些结果代表了迈向了解电动移位过程动力学的重要一步。

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