材料科学
离子
电压
纳米流体学
离子通道
光电子学
纳米技术
离子运输机
电压门控离子通道
化学
电气工程
生物化学
工程类
受体
有机化学
作者
Yuqi Wang,Huacheng Zhang,Yuan Kang,Yinlong Zhu,George P. Simon,Huanting Wang
出处
期刊:ACS Nano
[American Chemical Society]
日期:2019-09-17
卷期号:13 (10): 11793-11799
被引量:101
标识
DOI:10.1021/acsnano.9b05758
摘要
Voltage-gated nanofluidic systems have shown a wide range of potential applications in biosensors, energy harvest, and separation. Two-dimensional (2D) nanofluidic membranes fabricated with electrically conductive nanosheets have high ion conductivity and voltage-gated ion transport behaviors. However, the voltage-gating effect of the sub-nanometer-sized 2D channel membranes has not been well-investigated. In this work, a high-performance voltage-gated 2D nanofluidic device is constructed by assembling MXene nanosheets into a laminar membrane with sub-1 nm interlayer channels. By applying external voltage to the membrane, the ion conductivity of the device is enhanced by positive voltages and reduced by negative voltages, exhibiting a high voltage-gating on–off ratio of ∼10. The on–off ratio is found to be dependent on ion concentration and ion species. This work demonstrates that 2D membranes with interlayer spacings comparable to those of hydrated ion diameters can achieve high and tunable voltage-gating function, which provides a strategy to construct devices for highly efficient on-demand ion transport.
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