Klymenko Oleksiy V, Amatore Christian, Svir Irina
Mathematical and Computer Modelling Laboratory, Kharkov National University of Radioelectronics, 14 Lenin Avenue, Kharkov, 61166, Ukraine.
Anal Chem. 2007 Aug 15;79(16):6341-7. doi: 10.1021/ac0706168. Epub 2007 Jul 19.
Mass transport at cylindrical and spherical microelectrodes involving diffusion and migration is analyzed by means of numerical simulation under transient conditions. The origin of the intrinsic difficulties encountered during the numerical solution of the diffusion-migration equations using implicit finite differences are outlined, especially for the particular case when the number of electrons transferred equals the charge number of the electroactive species. The numerical results for transient conditions have been compared to the general analytical solutions for the current enhancement or diminishment due to migration under steady- and quasi-steady-state conditions at 1D geometry microelectrodes (Amatore, C.; Fosset, B.; Bartelt, J.; Deakin, M. R.; Wightman, R. M. J. Electroanal. Chem. 1988, 256, 255-268). This yields that the analytical limiting currents are applicable, within experimental error, to the analysis of transient diffusion-migration current responses at microelectrodes of cylindrical and spherical geometries except extremely short times after the application of the potential step, i.e., when current measurements are anyway already corrupted by ohmic drop when the supporting electrolyte concentration is low. Also, this confirms that the current enhancements or diminishments due to migration are identical for both electrode geometries when steady- or quasi-steady states are approached and do not drastically differ even under transient regimes.
通过数值模拟分析了瞬态条件下圆柱和球形微电极上涉及扩散和迁移的传质过程。概述了使用隐式有限差分法求解扩散 - 迁移方程时遇到的固有困难的根源,特别是当转移的电子数等于电活性物质的电荷数这种特殊情况。将瞬态条件下的数值结果与一维几何形状微电极在稳态和准稳态条件下由于迁移导致的电流增强或减弱的一般解析解进行了比较(阿马托雷,C.;福塞特,B.;巴特尔特,J.;迪金,M. R.;怀特曼,R. M.《电分析化学杂志》1988年,256卷,255 - 268页)。结果表明,在实验误差范围内,解析极限电流适用于分析圆柱和球形几何形状微电极上的瞬态扩散 - 迁移电流响应,但在施加电位阶跃后的极短时间内除外,即当支持电解质浓度较低时,电流测量已经受到欧姆降的影响。此外,这证实了在接近稳态或准稳态时,两种电极几何形状由于迁移导致的电流增强或减弱是相同的,即使在瞬态状态下也没有显著差异。