论文标题

微流体电化学芯片中的半分析传质阻抗模型

Semianalytical mass transfer impedance model in microfluidic electrochemical chips

论文作者

Chevalier, Stéphane, Garcia, Marine, Sommier, Alain, Batsale, Jean-Christophe

论文摘要

在本文中,我们报告了微流体电化学芯片(MEC)中传质阻抗的半分析模型。它基于在沉积电极界面处具有Poiseuille流动和电化学反应的微流体通道中的摩尔对流扩散方程。使用傅立叶拉普拉斯积分变换和四极形式主义,可以找到对这些方程的解决方案,并计算三个维(3D)瞬态浓度和电流密度场。使用通过可见光谱成像技术测量的MFC Operando浓度场验证该解决方案,还提出了几种等效电路以模拟MEC中的传质。这项工作报告了计算3D瞬态传质阻抗的最快方法,该阻抗可用于多种应用,例如基于MEC的细胞术测量或燃料电池电流密度预测。

In this paper we report a semianalytical model of the mass transfer impedance in microfluidic electrochemical chips (MEC). It is based on the molar advection diffusion equation in a microfluidic channel with a Poiseuille flow and an electrochemical reaction at the interface of deposited electrodes. Using the Fourier-Laplace integral transforms and the quadrupole formalism, a solution to these equations is found and the three dimensional (3D) transient concentration and current density fields are computed. This solution is validated using MFC operando concentration fields measured by visible spectroscopic imaging technique, and several equivalent electrical circuits are also proposed to model the mass transfer in MEC. This work reports the fastest way to compute the 3D transient mass transfer impedance which can be used in large variety of applications such as MEC based cytometry measurements or fuel cell current density prediction.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源