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Simulation of electrically tunable semiconductor nanopores for ion current/single bio-molecule manipulation

机译:用于离子电流/单个生物分子操纵的电可调半导体纳米孔的模拟

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摘要

We show that a semiconductor membrane made of two thin layers of opposite (n- and p-) doping can perform electrically tunable ion current rectification and filtering in a nanopore. Our model is based on the solution of the 3D Poisson equation for the electrostatic potential in a double-cone nanopore, combined with a transport model. It predicts that for appropriate biasing of the membrane-electrolyte system, transitions from ohmic behavior to sharp rectification with vanishing leakage current are achievable. Further more, ion current rectifying and filtering regimes of the nanopore correspond to different charge states in the p-n membrane which can be tuned with appropriate biasing of the n- and p-layers.
机译:我们表明,由两个相反的(n-和p-)掺杂薄层制成的半导体膜可以在纳米孔中进行电可调的离子电流整流和过滤。我们的模型是基于3D Poisson方程的双锥纳米孔中静电势的解以及输运模型。它预测,对于适当的膜电解质系统偏压,可以实现从欧姆行为到消失电流消失的急剧整流。此外,纳米孔的离子电流整流和过滤方式对应于p-n膜中的不同电荷状态,可以通过适当偏置n-层和p-层来对其进行调节。

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