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基于感应对流扩散离子浓度层的新型电化学流动传感器。

Novel Electrochemical Flow Sensor Based on Sensing the Convective-Diffusive Ionic Concentration Layer.

机构信息

Faculty of Mechanical Engineering, Micro- and Nanofluidics Laboratory , Technion - Israel Institute of Technology , Technion City 3200000 , Israel.

出版信息

ACS Sens. 2019 Jul 26;4(7):1806-1815. doi: 10.1021/acssensors.9b00431. Epub 2019 Jun 28.

Abstract

Presented is a novel flow sensor based on electrochemical sensing of the ionic concentration-polarization (CP) layer developed within a microchannel-ion permselective membrane device. To demonstrate the working principle of the electrochemical flow sensor, the effect of advection on the transient and steady-state ionic concentration-polarization (CP) phenomenon in microchannel-Nafion membrane systems is studied. In particular, we focused on the local impedance, measured using an array of electrode pairs embedded at the bottom of the microchannel, as well as the total current across the permselective medium, as two approaches for estimating the flow. We examined both a stepwise application of CP under steady-state flow and a stepwise application of flow under steady-state CP.

摘要

本文提出了一种基于微通道-离子选择膜装置内电化学感应离子浓度极化(CP)层的新型流量传感器。为了演示电化学流量传感器的工作原理,研究了对流对微通道- Nafion 膜系统中瞬态和稳态离子浓度极化(CP)现象的影响。特别地,我们关注使用嵌入在微通道底部的电极对阵列测量的局部阻抗,以及穿过选择透过性介质的总电流,这两种方法都可用于估计流量。我们分别研究了在稳态流动下 CP 的逐步施加和在稳态 CP 下流动的逐步施加。

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