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首页> 外文期刊>Electrochemistry communications >Adaptative finite element simulation of currents at microelectrodes to a guaranteed accuracy. First-order EC' mechanism at inlaid and recessed discs
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Adaptative finite element simulation of currents at microelectrodes to a guaranteed accuracy. First-order EC' mechanism at inlaid and recessed discs

机译:微电极上电流的自适应有限元模拟,以确保准确性。嵌入式和嵌入式光盘上的一阶EC'机制

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摘要

In this paper we extend the introductory work described in the accompanying papers on the use of adaptive finite element methods in electrochemical simulation (K. Harriman et al., Electrochem. Commun. 2 (2000) 150 and 157) to the case of a (pseudo) first-order EC' reaction mechanism at both an inlaid and a recessed disc. The recessed disc is shown to be a particularly suitable example for illustrating the power of the technique in providing the simulated current to a guaranteed accuracy on near-optimal meshes. For both problems we demonstrate that we can obtain excellent accuracy across the spectrum of reaction rates using just a few seconds of CPU time. Our results also confirm the accuracy of some recently published analytical solutions to these problems (L. Rajendran, M. V. Sangaranarayanan, J. Phys. Chem. B 103 (1999) 1518-1524; J. Galceran et al., J. Electroanal. Chem. (1999) in press).
机译:在本文中,我们将随附论文中介绍的在电化学模拟中使用自适应有限元方法(K. Harriman等人,Electrochem。Commun。2(2000)150和157)的介绍性工作扩展为a(假的)一阶EC'反应机制在镶嵌盘和凹入盘上均如此。所示的凹盘是一个特别合适的例子,用于说明在接近最佳的网格上以保证的精度提供模拟电流的技术的力量。对于这两个问题,我们证明了仅使用几秒钟的CPU时间,便可以在整个反应速率范围内获得出色的精度。我们的结果还证实了一些最近发布的针对这些问题的分析方法的准确性(L.Rajendran,MV Sangaranarayanan,J.Phys.Chem.B 103(1999)1518-1524; J.Galceran等人,J.Electroanal.Chem。 (1999)。

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