From reviews of previous volumes: <br />"This long-standing series continues its tradition of offering high quality reviews of established and emerging subject areas, together with the less common aspects of electrochemical science ... Deserves a place in electrochemistry libraries and should prove useful to electrochemists and related workers." <br /><em>(Chemistry and Industry) <br /></em>"Continues the valuable service that has been rendered by the <em>Modern</em> <em>Aspects</em> series." <br /><em>(Journal of Electroanalytical Chemistry) <br /></em>"Will definitely be of much use to researchers in the field of electrochemistry ... The editors of this well-produced volume deserve all appreciation for maintaining the excellent standard of the series." <br /><em>(Bulletin of Electrochemistry)</em> <br />"Extremely well-referenced and very readable ... Maintains the overall high standards of the series." <br /><em>(Journal of the American Chemical Society)</em>

This volume of Modern Aspects contains seven chapters. The major topics covered in the first six chapters of this volume include fundamentals of solid state electrochemistry; kinetics of electrochemical hydrogen entry into metals and alloys; oxidation of organics; fuel cells; electrode kinetics of trace-anion catalysis; nano structural analysis. The last chapter is a corrected version of chapter four from Volume 35. Faisal M. AI-faqeer and Howard W. Pickering begin the first chapter by going back to 1864 and Cailletet who found that some hydrogen evolved and was absorbed by iron when it was immersed in dilute sulfuric acid. The absorption of hydrogen into metals and alloys can lead to catastrophic failures of structures. They discuss the kinetics of electrochemical hydrogen entry into metals and alloys. In chapter three, Clyde L. Briant reviews the electrochemistry, corrosion and hydrogen embrittlement of unalloyed titanium. He begins by reviewing the basic electrochemistry and general corrosion of titanium. He also discusses pitting and galvanostatic corrosion followed by a review of hydrogen embrittlement emphasizing the formation of hydrides and the effect of these on titanium's mechanical properties. Christos Comninellis and Gy6rgy F6ti discuss the oxidative electrochemical processes of organics in chapter three. They begin by defining direct and indirect electrochemical oxidation of organics. They introduce a model that allows them to distinguish between active (strong) and non-active (weak) anodes. Different classes of organic compounds are used for kinetic models of organic oxidation at active and non-active type anodes.
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Pickering begin the first chapter by going back to 1864 and Cailletet who found that some hydrogen evolved and was absorbed by iron when it was immersed in dilute sulfuric acid.
1 Kinetics of Electrochemical Hydrogen Entry into Metals and Alloys.- 2 The Electrochemistry, Corrosion and Hydrogen Embrittlement of Titanium.- 3 Electrochemical Oxidation of Organics on Iridium Oxide and Synthetic Diamond Based Electrodes.- 4 Fuel Cells.- 5 Trace-Anion Catalysis of Outer-Sphere Heterogeneous Charge-Transfer Reactions.- 6 Thermodynamic and Transport Properties of Bridging Electrolyte-Water Systems.- References.
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Produktdetaljer

ISBN
9780306482267
Publisert
2003-12-31
Utgiver
Springer Science+Business Media
Høyde
216 mm
Bredde
140 mm
Aldersnivå
Research, U, UU, UP, P, 05, 06
Språk
Product language
Engelsk
Format
Product format
Innbundet