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具有空间非均匀固定电荷分布的纳米孔中的离子传输与选择性

Ion transport and selectivity in nanopores with spatially inhomogeneous fixed charge distributions.

作者信息

Ramírez Patricio, Gómez Vicente, Cervera Javier, Schiedt Birgitta, Mafé Salvador

机构信息

Departament de Física Aplicada, Universitat Politècnica de València, Camino de Vera s/n, E-46022 Valencia, Spain.

出版信息

J Chem Phys. 2007 May 21;126(19):194703. doi: 10.1063/1.2735608.

Abstract

Polymeric nanopores with fixed charges show ionic selectivity when immersed in aqueous electrolyte solutions. The understanding of the electrical interaction between these charges and the mobile ions confined in the inside nanopore solution is the key issue in the design of potential applications. The authors have theoretically described the effects that spatially inhomogeneous fixed charge distributions exert on the ionic transport and selectivity properties of the nanopore. A comprehensive set of one-dimensional distributions including the skin, core, cluster, and asymmetric cases are analyzed on the basis of the Nernst-Planck equations. Current-voltage curves, nanopore potentials, and transport numbers are calculated for the above distributions and compared with those obtained for a homogeneously charged nanopore with the same average fixed charge concentration. The authors have discussed if an appropriate design of the spatial fixed charge inhomogeneity can lead to an enhancement of the transport and selectivity with respect to the homogeneous nanopore case. Finally, they have compared the theoretical predictions with relevant experimental data.

摘要

带有固定电荷的聚合物纳米孔在浸入水性电解质溶液时会表现出离子选择性。理解这些电荷与纳米孔内部溶液中受限的移动离子之间的电相互作用是潜在应用设计中的关键问题。作者从理论上描述了空间不均匀的固定电荷分布对纳米孔离子传输和选择性特性的影响。基于能斯特 - 普朗克方程,分析了包括表皮、核心、簇状和不对称情况在内的一组全面的一维分布。针对上述分布计算了电流 - 电压曲线、纳米孔电位和迁移数,并与具有相同平均固定电荷浓度的均匀带电纳米孔所获得的结果进行了比较。作者讨论了空间固定电荷不均匀性的适当设计是否能导致相对于均匀纳米孔情况而言传输和选择性的增强。最后,他们将理论预测与相关实验数据进行了比较。

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