By Richard G Compton, Eduardo Laborda, Kristopher R Ward
This can be the 1st textbook within the box of electrochemistry that might educate experimental electrochemists tips to perform simulation of electrode strategies. techniques at either macro- and micro-electrodes are tested and the simulation of either diffusion-only and diffusion convection techniques are addressed. The simulation of techniques with coupled homogeneous kinetics and at microelectrode arrays are additional mentioned.
Over the process the publication the reader's realizing is built to the purpose the place they are going to be capable of adopt and remedy research-level difficulties. The ebook leads the reader via from a simple realizing of the foundations underlying electrochemical simulation to the advance of laptop courses which describe the advanced tactics present in voltammetry.
this can be the 3rd booklet within the figuring out Voltammetry sequence, released with Imperial university Press and written by way of the Compton team. different books within the sequence contain figuring out Voltammetry , written through Richard G Compton with Craig Banks and in addition knowing Voltammetry: difficulties and suggestions (2012) written by way of Richard G Compton with Christopher Batchelor-McAuley and Edmund Dickinson. those are and stay winning textbooks for graduates in electrochemistry and electroanalytical stories.
Readership: Graduate scholars pursuing electrochemistry and electroanalytical stories, in addition to researchers and pros operating within the region.
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Additional info for Understanding Voltammetry: Simulation of Electrode Processes
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Analysis of the position and shape of the peaks can give important information about the nature of the electrochemical process taking place and about the chemical species themselves. The scan rate, ν, in V s−1 , is the constant rate at which the voltage sweeps from the initial potential, Ei , to the vertex potential, Ev , and back again. 6 /V Fig. 2. 1. reverses direction. 1. 7) where Ef0 is the formal potential of the reaction, R is the gas constant, T is the temperature (often 298 K), F is the Faraday constant, and cA,0 and cB,0 are the concentrations at (next to) the electrode surface of A and B respectively.
Girault, H. H. (2004). Analytical and Physical Electrochemistry, EPFL-Press, Lausanne. • Lund, H. and Hammerich, O. (2001). Organic Electrochemistry, Marcel Dekker, New York. • Oldham, K. , Myland, J. C. and Bond, A. M. (2012). Electrochemical Science and Technology, Wiley, Chichester. • Pletcher, D. (2009). , The Royal Society of Chemistry, Cambridge. -M. (2006). Elements of Molecular and Biomolecular Electrochemistry: An Electrochemical Approach to Electron Transfer Chemistry, Wiley-Interscience, Hoboken.