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Gate manipulation of ionic conductance in a nanochannel with overlapped electric double layers

机译:具有重叠双电层的纳米通道中离子电导的门操纵

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摘要

To improve the development of gated nanofluidic devices for emerging applications, analytical expressions are derived to investigate the gate manipulation of surface charge property and ionic conductance in a pH-regulated nanochannel with overlapped electric double layers (EDLs). Results show that the EDL overlap effect is relatively significant at low pH and salt concentration when a negative gate potential is applied. If pH is low, the EDL overlap effect on the field control of zeta potential of the nanochannel is remarkable at large positive gate voltage, while that effect on ionic conductance is significant at large negative gate voltage.
机译:为了改进用于新兴应用的门控纳米流体器件的开发,派生了分析表达式,以研究具有双电层(EDL)的pH调节纳米通道中表面电荷性质和离子电导率的门操纵。结果表明,当施加负栅极电位时,在低pH和低盐浓度下,EDL重叠效应相对显着。如果pH值较低,则在较大的正栅极电压下,EDL对纳米通道的Zeta电位场控制的重叠效应将显着,而在较大的负栅极电压下,对离子电导率的影响将显着。

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