Electrochemistry of metal complexes : applications from electroplating to oxide layer formation /

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Bibliographic Details
Main Author: Survila, Arvydas (Author)
Corporate Author: Ebooks Corporation
Format: Electronic eBook
Language:English
Published: Weinheim, Germany : Wiley-VCH, [2015]
Subjects:
Online Access:Connect to this title online (unlimited simultaneous users allowed; 325 uses per year)

MARC

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245 1 0 |a Electrochemistry of metal complexes :  |b applications from electroplating to oxide layer formation /  |c Arvydas Survila. 
264 1 |a Weinheim, Germany :  |b Wiley-VCH,  |c [2015] 
300 |a 1 online resource :  |b illustrations 
336 |a text  |b txt  |2 rdacontent 
337 |a computer  |b c  |2 rdamedia 
338 |a online resource  |b cr  |2 rdacarrier 
504 |a Includes bibliographical references and index. 
505 0 0 |a Machine generated contents note:   |g 1.  |t Introduction --   |g 1.1.  |t Equilibrium Properties of Complex Systems --   |g 1.1.1.  |t General Definitions --   |g 1.1.2.  |t Equilibrium in the Solutions of Complex Compounds --   |g 1.1.3.  |t Distribution of Complexes and Ligands in the Solution --   |t References --   |g 2.  |t Equilibrium Electrode Potentials --   |g 2.1.  |t Electrodes of the First Kind --   |g 2.2.  |t Equilibria Involving Ions of the Intermediate Oxidation State --   |g 2.3.  |t Electrodes of the Second Kind --   |g 2.4.  |t Open-Circuit Potentials: Examples of Experimental Investigations --   |g 2.4.1.  |t System Cu/Cu(I),CN- --   |g 2.4.2.  |t System Cu/Cu(II), β-Alanine --   |t References --   |g 3.  |t Mass Transport --   |g 3.1.  |t Two Models of Linear Mass Transport --   |g 3.2.  |t Other Cases of Diffusional Mass Transport --   |g 3.3.  |t Mass Transport of Chemically Interacting Particles --   |g 3.4.  |t Concentration Profiles --   |g 3.4.1.  |t Concentration Profiles in Ideally Labile Systems --   |g 3.4.2.  |t Concentration Profiles in Systems of Limited Lability --   |t References --   |g 4.  |t Peculiarities of Electrochemical Processes Involving Labile Complexes --   |g 4.1.  |t Steady-State Voltammograms --   |g 4.2.  |t Potential Transients --   |g 4.3.  |t Current Transients --   |t References --   |g 5.  |t Quantitative Modeling of Quasi-Reversible Electrochemical Processes Involving Labile Complexes of Metals --   |g 5.1.  |t Kinetic Equations --   |g 5.2.  |t Employment of Voltammetric Data --   |g 5.2.1.  |t Tafel Plots Normalized with Respect to the Surface Concentration of EAC --   |g 5.2.2.  |t Analysis of LPS Current Maxima --   |g 5.3.  |t Techniques Based on the Control of the Intensity of Forced Convection --   |g 5.3.1.  |t Isosurface Concentration Voltammetry --   |g 5.3.2.  |t Determination of the Exchange Current Density from Polarization Resistance --   |g 5.3.3.  |t Electrochemical Impedance Spectroscopy (EIS) under Forced Convection Conditions --   |t References --   |g 6.  |t Determination of Mechanism of Electrochemical Processes Involving Metal Complexes --   |g 6.1.  |t Determination of the Mechanism by Reaction Orders --   |g 6.2.  |t Method of Isopotential Solutions --   |t References --   |g 7.  |t Adsorption --   |g 7.1.  |t Thermodynamic Aspects --   |g 7.2.  |t Model Aspects --   |t References --   |g 8.  |t Electrochemical Processes in Real Systems --   |g 8.1.  |t Experimental Details --   |g 8.2.  |t Cyanide Systems --   |g 8.2.1.  |t System Cu  |g 8.2.2.  |t System Ag  |g 8.2.3.  |t System Au  |g 8.3.  |t Ecological Systems Containing Hydroxy Acids --   |g 8.3.1.  |t Electroreduction of Cu(II) Complexes --   |g 8.3.2.  |t Electroreduction of Sn(II) Complexes --   |g 8.3.3.  |t Electroreduction of Zn(II) Complexes --   |t Appendix --   |t References --   |g 9.  |t Electrochemical Deposition of Alloys --   |g 9.1.  |t Mass Transport during the Codeposition of Metals --   |g 9.2.  |t Codeposition of Cobalt and Tin --   |g 9.3.  |t Deposition of Brass Coatings --   |g 9.4.  |t Deposition of Bronze Coatings --   |g 9.4.1.  |t Surface Activity of Polyethers on Copper and Tin Substrates --   |g 9.4.2.  |t Effect of Halides. Formation of Surface Complexes --   |g 9.4.3.  |t Effect of Length of the Hydrocarbon Chain --   |g 9.4.4.  |t Codeposition of Copper and Tin --   |g 9.4.5.  |t Related Phenomena: Current Oscillations --   |g 9.5.  |t Codeposition of Cobalt and Molybdenum --   |t References --   |g 10.  |t Spontaneous Formation of Photosensitive Cuprous Oxide Layers --   |g 10.1.  |t Two Mechanisms of Cu2O Formation --   |g 10.2.  |t Composition of Oxide Layers --   |g 10.3.  |t Kinetics of Cu2O Formation --   |g 10.4.  |t Electrochemical Reduction of Oxide Layers --   |g 10.5.  |t Photoelectrochemical Properties of Oxide Layers --   |g 10.6.  |t Photoelectrochemical Stability of Oxide Layers --   |g 10.7.  |t Influence of Oxide Layers on Kinetics of Cu(II) Reduction --   |t References --   |g 11.  |t Hydrogen Evaluation Involving Ligands as Proton Donors --   |t References. 
533 |a Electronic reproduction.  |b Perth, W.A.  |n Available via World Wide Web. 
588 |a Description based on online resource; title from digital title page (viewed on September 15, 2015). 
650 0 |a Electrochemistry. 
650 0 |a Metal complexes. 
650 0 |a Chemical equilibrium. 
710 2 |a Ebooks Corporation 
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919 |a .ulebk  |b 2015-07-13 
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