首页> 外文期刊>Journal of Colloid and Interface Science >Voltage-controlled ion transport and selectivity in a conical nanopore functionalized with pH-tunable polyelectrolyte brushes
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Voltage-controlled ion transport and selectivity in a conical nanopore functionalized with pH-tunable polyelectrolyte brushes

机译:用pH可调谐聚电解质刷官能化的锥形纳米孔中的电压控制离子传输和选择性

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摘要

Chemically functionalized bioinspired nanopores are widely adopted to control the ionic transport for various purposes. A detailed understanding of the underlying mechanisms is not only desirable but also necessary for device design and experimental data interpretation. Here, the conductance and the ion selectivity of a conical nanopore surface modified by a polyelectrolyte (PE) layer are studied through adjusting the pH, the bulk salt concentration, and the level of the applied potential bias. Possible mechanisms are proposed and discussed in detail. We show that the conductance is sensitive to the variation in the solution pH. The ion selectivity of the nanopore is influenced significantly by both the solution pH and the level of the applied potential bias. In particular, a cation-selective nanopore might become anionselective through raising the applied potential bias. The ion transport behavior can be tuned easily by adjusting the level of pH, salt concentration, and applied potential bias, thereby providing useful information for the design of nanopore-based sensing devices. (C) 2018 Elsevier Inc. All rights reserved.
机译:广泛采用化学官能化的生物悬浮的纳米孔以控制各种目的的离子运输。对潜在机制的详细了解不仅是可取的,而且还需要用于设备设计和实验数据解释。这里,通过调节pH,散盐浓度和施加电位偏压的水平来研究由聚电解质(PE)层改性的锥形纳米孔表面的电导和离子选择性。提出并详细讨论了可能的机制。我们表明,电导对溶液pH的变异敏感。纳米孔的离子选择性通过溶液pH和施加的电位偏压的水平显着影响。特别地,阳离子选择性纳米孔可以通过提高所施加的电位偏压来成为ANIONSExective。通过调节pH,盐浓度和施加的电位偏压水平,可以容易地调谐离子传输行为,从而为基于纳米孔的传感装置的设计提供了有用的信息。 (c)2018 Elsevier Inc.保留所有权利。

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