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首页> 外文期刊>Electrophoresis: The Official Journal of the International Electrophoresis Society >Ion concentration polarization near microchannel-nanochannel interfaces: Effect of pH value
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Ion concentration polarization near microchannel-nanochannel interfaces: Effect of pH value

机译:微通道-纳米通道界面附近的离子浓度极化:pH值的影响

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摘要

This study investigates the effect of the pH value on the ion concentration polarization phenomenon and the nonlinear current-voltage characteristics of a hybrid soda-lime glass microanochannel for a constant KCl salt concentration of about 1 mM. The experimental results show that the electrical conductance of the nanochannel in the Ohmic regime and the critical threshold voltage of the limiting current are both dependent on the pH value of the salt solution when the electrical double layer thickness is considerable in the nanochannel. Specifically, the nanochannel conductance increases and the critical threshold voltage for the limiting current decreases as the pH value is increased. It also suggests that a higher pH value induces a higher surface charge density on the nanochannel walls, and therefore increases both the ionic conductance and the counter-ion flux within the nanochannel.
机译:这项研究调查了pH值对离子浓度极化现象的影响,以及在约1 mM的恒定KCl盐浓度下钠钙玻璃混合微/纳米通道的非线性电流-电压特性。实验结果表明,当纳米通道中的双电层厚度相当大时,在欧姆状态下纳米通道的电导率和极限电流的临界阈值电压都取决于盐溶液的pH值。具体地,随着pH值的增加,纳米通道电导增加并且用于极限电流的临界阈值电压降低。这也表明较高的pH值会在纳米通道壁上引起较高的表面电荷密度,因此会增加纳米通道内的离子电导率和抗衡离子通量。

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