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Ion Transport in Electrically Imperfect Nanopores

机译:在电不完全纳米孔中的离子输送

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Ionic transport through a charged nanopore at low ion concentration is governed by the surface conductance. Several experiments have reported various power-law relations between the surface conductance and ion concentration, i.e. , G _(surf) ∝ c 0) α). However, the physical origin of the varying exponent, α, is not yet clearly understood. By performing extensive coarse-grained Molecular Dynamics simulations for various pore diameters, lengths, and surface charge densities, we observe varying power-law exponents even with a constant surface charge and show that α depends on how electrically “perfect” the nanopore is. Specifically, when the net charge of the solution in the pore is insufficient to ensure electroneutrality, the pore is electrically “imperfect” and such nanopores can exhibit varying α depending on the degree of “imperfectness”. We present an ionic conductance theory for electrically “imperfect” nanopores that not only explains the various power-law relationships but also describes most of the experimental data available in the literature.
机译:在低离子浓度下通过带电纳米孔的离子传输由表面电导控制。几个实验报告了表面电导和离子浓度之间的各种幂律关系,

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