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首页> 外文期刊>Physical review, E >Transient response of nonideal ion-selective microchannel-nanochannel devices
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Transient response of nonideal ion-selective microchannel-nanochannel devices

机译:非膜离子选择性微型通道 - 纳米通道装置的瞬态响应

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摘要

We report evidence of variation in ion selectivity of a fabricated microchannel-nanochannel device resulting in the appearance of a distinct local maximum in the overlimiting chronopotentiometric response. In this system consisting of shallow microchannels joined by a nanochannel, viscous shear at the microchannel walls suppresses the electro-osmotic instability and prevents any associated contribution to the nonmonotonic response. Thus, this response is primarily electrodiffusive. Numerical simulations indicate that concentration polarization develops not only within the microchannel but also within the nanochannel itself, with a local voltage maximum in the chronopotentiometric response correlated with interfacial depletion and having the classic i~(-2) Sands time dependence. Furthermore, the occurrence of the local maxima is correlated with the change in selectivity due to internal concentration polarization. Understanding the transient nonideal permselective response is essential for obtaining fundamental insight and for optimizing efficient operation of practical fabricated nanofluidic and membrane devices.
机译:我们报告了制造的微通道 - 纳米通道装置的离子选择性变化的证据,导致覆着计时率响应的不同局部最大值的外观。在该系统中,由纳米通道连接的浅微通道组成,微通道壁处的粘性剪切抑制了电渗透不稳定性并防止对非单调响应的任何相关贡献。因此,这种响应主要是电渗。数值模拟表明,浓度极化不仅在微通道内而且在纳米通道本身内发育,局部电压最大值与界面耗尽相关,并且具有经典的I〜(-2)砂时间依赖性。此外,局部最大值的发生与由于内部浓度极化引起的选择性的变化相关。了解瞬态非膜PERM选择反应对于获得基本洞察力和优化实用制造的纳米流体和膜装置的有效操作至关重要。

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