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Handbook of Solid State Electrochemistry

Langue : Anglais

Auteurs :

Couverture de l’ouvrage Handbook of Solid State Electrochemistry

The Handbook of Solid State Electrochemistry is a one-stop resource treating the two main areas of solid state electrochemistry: electrochemical properties of solids such as oxides, halides, and cation conductors; and electrochemical kinetics and mechanisms of reactions occurring on solid electrolytes, including gas-phase electrocatalysis. The fundamentals are presented, including structural and defect chemistry, diffusion and transport in solids, conductivity and electrochemical reaction, and adsorption and reactions on solid surfaces. The Handbook also covers experimental methods and computer-aided interpretation of experimental results used in the field.
The Handbook of Solid State Electrochemistry addresses applications of solid state electrochemistry in a number of fields, including:

  • solid oxide fuel cells
  • batteries
  • sensors and actuators
  • semi-permeable membranes
  • corrosion processes
  • electrocatalysis
  • electrochromic devices
    For materials scientists, engineers, and researchers from academia and industry, the Handbook provides guidance through the rapidly growing field of solid state electrochemistry.
  • Chapter 1 Introduction, Chapter 2 Principles of Electrochemistry, Chapter 3 Solid State Background, Chapter 4 Interface Electrical Phenomena in Ionic Solids, Chapter 5 Defect Chemistry in Solid State Electrochemistry, Chapter 6 Survey of Types of Solid Electrolytes, Chapter 7 Electrochemistry of Mixed Ionic–Electronic Conductors, Chapter 8 Electrodics, Chapter 9 Principles of Main Experimental Methods, Chapter 10 Electrochemical Sensors, Chapter 11 Solid State Batteries, Chapter 12 Solid Oxide Fuel Cells, Chapter 13 Electrocatalysis and Electrochemical Reactors, Chapter 14 Dense Ceramic Membranes for Oxygen Separation, Chapter 15 Corrosion Studies, Chapter 16 Electrochromism and Electrochromic Devices, INDEX
    Professional

    "Prof. Dr. P.J. Gellings. After studying chemistry at the University of Leiden (the Netherlands), Prof. Gellings received his degree in physical chemistry in 1952. Subsequently he worked as research scientist in the Laboratory of Materials Research of Werkspoor N.V. (Amsterdam, the Netherlands). He obtained his Ph.D. degree from the University of Amsterdam in 1963 on the basis of a dissertation titled: “Theoretical considerations on the kinetics of electrode reactions.” In 1964 Prof. Gellings was appointed professor of Inorganic Chemistry and Materials Science at the University of Twente. His main research interests were coordination chemistry and spectroscopy of transition metal compounds, corrosion and corrosion prevention, and catalysis. In 1991 he received the Cavallaro Medal of the European Federation Corrosion for his contributions to corrosion research. In 1992 he retired from his post at the University, but has remained active as supervisor of graduate students in the field of high temperature corrosion.
    Dr. H.J.M. Bouwmeester. After studying chemistry at the University of Groningen (the Netherlands), Dr. Bouwmeester received his degree in inorganic chemistry in 1982. He received his Ph.D. degree at the same university on the basis of a dissertation titled: “Studies in Intercalation Chemistry of Some Transition Metal Dichalcogenides.” For three years he was involved with industrial research in the development of the ion sensitive field effect transistor (ISFET) for medical application at Sentron V.O.F. in the Netherlands. In 1988 Dr. Bouwmeester was appointed assistant professor at the University of Twente, where he heads the research team on Dense Membranes and Defect Chemistry in the Laboratory of Inorganic Materials Science. His research interests include defect chemistry, order-disorder phenomena, solid state thermodynamics and electrochemistry, ceramic surfaces and interfaces, membranes, and catalysis. He is involved in several international pro

    This handbook treats both of the main fields of solid state electrochemistry : electrochemical properties of solids such as oxides, halides and cation conductors , and electrochemical kinetics and mechanism of reactions occuring on solid electrolytes, including gas-phase electrocatalysis. The fundamentals of both subjects are presented, along with the principles of the main applications and experimental methods used in the field.

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