Green Yoav, Edri Yaron, Yossifon Gilad
Faculty of Mechanical Engineering, Micro- and Nanofluidics Laboratory, Technion - Israel Institute of Technology, Technion City 32000, Israel.
Phys Rev E Stat Nonlin Soft Matter Phys. 2015 Sep;92(3):033018. doi: 10.1103/PhysRevE.92.033018. Epub 2015 Sep 30.
For a symmetric ion permselective system, in terms of geometry and bulk concentrations, the system response is also symmetric under opposite electric field polarity. In this work we derive an analytical solution for the concentration distribution, electric potential, and current-voltage response for a four-layered system comprised of two microchambers connected by two permselective regions of varying properties. It is shown that any additional asymmetry in the system, in terms of the geometry, bulk concentration, or surface charge property of the permselective regions, results in current rectification. Our work is divided into two parts: when both permselective regions have the same surface charge sign and the case of opposite signs. For the same sign case we are able to show that the system behaves as a dialytic battery while accounting for field-focusing effects. For the case of opposite signs (i.e., bipolar membrane), our system exhibits the behavior of a bipolar diode where the magnitude of the rectification can be of order 10^{2}-10^{3}.
对于一个对称的离子选择透过性系统,从几何结构和本体浓度方面来看,在相反的电场极性下系统响应也是对称的。在这项工作中,我们推导了一个由两个微腔通过两个性质不同的选择透过性区域连接而成的四层系统的浓度分布、电势和电流 - 电压响应的解析解。结果表明,系统在选择透过性区域的几何结构、本体浓度或表面电荷性质方面的任何额外不对称性都会导致电流整流。我们的工作分为两部分:两个选择透过性区域具有相同表面电荷符号的情况和相反符号的情况。对于相同符号的情况,我们能够证明该系统在考虑场聚焦效应时表现为一个透析电池。对于相反符号的情况(即双极膜),我们的系统表现出双极二极管的行为,其中整流幅度可达(10^{2}-10^{3})量级。