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聚电解质双层修饰的锥形纳米孔中超高整流的起源。

Origin of Ultrahigh Rectification in Polyelectrolyte Bilayers Modified Conical Nanopores.

机构信息

Department of Chemical Engineering, National Taiwan University, Taipei 10617, Taiwan.

Institut Européen des Membranes, UMR5635 UM ENSM CNRS, Place Eugène Bataillon, 34095 CEDEX 5 Montpellier, France.

出版信息

J Phys Chem Lett. 2021 Dec 16;12(49):11858-11864. doi: 10.1021/acs.jpclett.1c03513. Epub 2021 Dec 7.

Abstract

The switching of "ON" and "OFF" states of an ionic diode is investigated by considering a conical nanopore partially functionalized two polyelectrolyte (PE) layers via layer-by-layer deposition. Through observing the inversion of its rectification behavior, we demonstrate the function of the PE bilayers in ionic transport regulation. The ionic diode exhibits an ultrahigh ion rectification at a low level of pH. In an aqueous NaCl solution at pH 2, for example, the ratio of the current at "ON" state and that at "OFF" state can be about 800 and 200 for 1 and 100 mM, respectively. This remarkable gating behavior can be explained by the anion-pump-induced ion accumulation in the neutral region as well as the depletion zone at the interface. Our results further demonstrate the possibility of achieving an ultrahigh rectification in an ionic diode having a unipolar-like configuration.

摘要

通过考虑通过层层沉积部分功能化的锥形纳米孔两个聚电解质(PE)层来研究离子二极管的“开”和“关”状态的切换。通过观察其整流行为的反转,我们证明了 PE 双层在离子传输调节中的作用。离子二极管在低 pH 值下表现出超高的离子整流。例如,在 pH 值为 2 的 NaCl 水溶液中,“开”状态和“关”状态的电流比分别约为 800 和 200,对于 1 和 100 mM。这种显著的门控行为可以通过阴离子泵诱导的中性区域以及界面处的耗尽区中的离子积累来解释。我们的结果进一步证明了在具有单极性配置的离子二极管中实现超高整流的可能性。

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