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pH-regulated ionic current rectification in conical nanopores functionalized with polyelectrolyte brushes

机译:用聚电解质刷功能化的圆锥形纳米孔中的pH调节离子电流整流

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摘要

Mimicking biological ion channels capable of pH-regulated ionic transport, synthetic nanopores functionalized with pH-tunable polyelectrolyte (PE) brushes have been considered as versatile tools for active transport control of ions, fluids, and bioparticles on the nanoscale. The ionic current rectification (ICR) phenomenon through a conical nanopore functionalized with PE brushes whose charge highly depends upon the local solution properties (i,e., pH and background salt concentration) is studied theoretically for the first time. The results show that the rectification magnitude, as well as the preferential rectification direction, is sensitive to the pH stimulus, The bulk concentration of the background salt can also significantly influence the charge of the PE brushes and accordingly affect the ICR phenomenon. The obtained results provide an insightful understanding of the pH-regulated ICR and guidelines for designing nanopores functionalized with PE brushes for pH-tunable applications.
机译:模仿能够调节pH值的离子迁移的生物离子通道,用pH可调聚电解质(PE)刷功能化的合成纳米孔被认为是在纳米级上主动控制离子,流体和生物颗粒的多功能工具。理论上首次对通过用PE刷功能化的圆锥形纳米孔的离子电流整流(ICR)现象进行了研究,该电刷的电荷高度取决于局部溶液的性质(即pH和背景盐浓度)。结果表明,精馏量以及优先精馏方向对pH值刺激敏感。背景盐的体积浓度也会显着影响PE刷的电荷,进而影响ICR现象。获得的结果提供了对pH调节的ICR的深刻理解,并为设计用于pH可调应用的PE刷功能化的纳米孔提供了指导。

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