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How the asymmetry of internal potential influences the shape of I-V characteristic of nanochannels

机译:内部电势的不对称如何影响纳米通道的I-V特性形状

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Ion transport in biological and synthetic nanochannels is characterized by such phenomena as ion current fluctuations, rectification, and pumping. Recently, it has been shown that the nanofabricated synthetic pores could be considered as analogous to biological channels with respect to their transport characteristics [P. Yu. Apel , Nucl. Instrum. Methods Phys. Res. B 184, 337 (2001); Z. Siwy , Europhys. Lett. 60, 349 (2002)]. The ion current rectification is analyzed. Ion transport through cylindrical nanopores is described by the Smoluchowski equation. The model is considering the symmetric nanopore with asymmetric charge distribution. In this model, the current rectification in asymmetrically charged nanochannels shows a diodelike shape of I-V characteristic. It is shown that this feature may be induced by the coupling between the degree of asymmetry and the depth of internal electric potential well. The role of concentration gradient is discussed. (c) 2006 American Institute of Physics.
机译:生物和合成纳米通道中的离子传输的特征是离子电流波动,整流和泵送等现象。近来,已经表明,就其运输特性而言,可以认为纳米加工的合成孔与生物通道类似[P.A.P.M.,E.S.A.,E.S.,A.S.,E.S.,S.,S.,S.,S。,等。羽。雅培(Apel),核仁。仪器方法物理。 Res。 B 184,337(2001); Z.Siwy,Europhys。来吧60,349(2002)]。分析离子电流整流。通过圆柱形纳米孔的离子传输由Smoluchowski方程描述。该模型正在考虑具有不对称电荷分布的对称纳米孔。在此模型中,不对称充电的纳米通道中的电流整流表现出I-V特性的类似二极管的形状。结果表明,该特征可能是由于不对称程度和内部电势深度之间的耦合所引起的。讨论了浓度梯度的作用。 (c)2006年美国物理研究所。

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