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Tuning Ion Transport and Selectivity by a Salt Gradient in a Charged Nanopore

机译:通过带电纳米孔中的盐梯度调节离子迁移和选择性

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Inspired by ion channels in biological cells where the intracellular and extracellular ionic concentrations are typically different, a salt concentration gradient through a charged nanopore is proposed to actively regulate its ion transport and selectivity. Results obtained show that, in addition to the ion current rectification phenomenon, a reversed ion selectivity of the nanopore occurs when the concentration gradient is sufficiently large. In addition, if the directions of the applied concentration gradient and electric field are identical, a reversed magnified electric field occurs near the cathode side of the nanopore. This induced field can be used to enhance the capture rate of biomolecules and is therefore capable of improving the performance of single biomolecule sensing using nanopores.
机译:受细胞内和细胞外离子浓度通常不同的生物细胞中离子通道的启发,提出了通过带电纳米孔的盐浓度梯度来主动调节其离子转运和选择性。所获得的结果表明,除了离子电流整流现象外,当浓度梯度足够大时,纳米孔的离子选择性也会逆转。另外,如果所施加的浓度梯度和电场的方向相同,则在纳米孔的阴极侧附近发生反向放大的电场。该感应场可用于提高生物分子的捕获率,因此能够改善使用纳米孔的单个生物分子传感的性能。

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