Electrochemistry: The Past Thirty and the Next Thirty YearsSome time ago a group of present and former collaborators of Professor John O'M. Bock ris, following a suggestion by Professor J. D. Mackenzie (Los Angeles), conceived the idea of an International Symposium devoted to reviewing the active and developing aspects of the science of electrochemistry. From this beginning has sprung the "Electrochemistry Symposium-The Past Thirty and the Next Thirty Years," which took place at Imperial College, London, from April 3-6, 1975. The plan for this symposium is unusual, since it features pairs of invited addresses, one to summarize the "state of the art" and the other to suggest directions for future re search in particular aspects of electrochemistry. This volume of proceedings gives these papers in their fmal, considered, and fully referenced form, arranged in the sequence of their delivery at the symposium. Also in cluded are introductory addresses given by Professor Ubbelohde, Professor Frumkin, Dr. Egan, and Dr. Inman. Both aspects of nearly every topic, plus the discussions, are integrated in a Report or Summary. A synopsis of the matters raised at the symposium and prepared by Professor John O'M. Bockris closes this volume. The cooperation of Plenum Press, New York, is gratefully acknowledged. |
Contents
Introductory Address | 1 |
Message of Greeting | 7 |
A R Despić Faculty of Technology and Metallurgy University of Beograd and | 9 |
Copyright | |
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Common terms and phrases
acid Acta adsorbed adsorption alkali alloys aluminum anions atoms B. E. Conway battery Bockris carbon Cat I CQL Cat TB CQT catalytic activity cathodic charge Chem chemical chemisorption chemistry compounds constant corrosion coverage crystal crystallite current density Damjanovic decrease deposition diffusion double layer effect efficiency elec electrical electrocatalysis electrochemical electrochemical cell electrochemistry electrode kinetics electrode potential electrode processes electrode reaction electrolyte Elektrokhimiya ellipsometry energy conversion energy sources equation Faraday Soc Figure fuel cells future growth H₂ H2 An TB heparin increase interaction interface ionic ions lead-acid battery materials mechanism membrane metals method molecules negative O2 Cat TB overvoltage oxygen evolution oxygen reduction Phys platinum polarization problems production reactors Redox Redox ND 102 rest potential reversible potential solar solution solvation solvent species Stonehart studies surface Tafel line TB ND techniques temperature theory tion Trans transport zinc