Solid State Electrochemistry And Its Applications To Sensors And Electronic Devices


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Solid State Electrochemistry and its Applications to Sensors and Electronic Devices


Solid State Electrochemistry and its Applications to Sensors and Electronic Devices

Author: K.S. Goto

language: en

Publisher: Elsevier

Release Date: 2013-10-22


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Based on the author's lecture notes for a course on Physical Chemistry of Oxides at High Temperatures held at the Graduate School of the Tokyo Institute of Technology, this book examines the micromechanism of migration of ions and electronic defects contained in solid and liquid oxides at high temperature.The book is primarily designed for use as a graduate-level text and includes 150 problems for students. The emphasis is on introduction of simple theories for transport properties of oxides, which can be universally used at low and high temperatures, for various combinations of oxides.

Solid State Electrochemistry and Its Applications to Sensors and Electronic Devices


Solid State Electrochemistry and Its Applications to Sensors and Electronic Devices

Author: Kazuhiro Sylvester Goto

language: en

Publisher:

Release Date: 1980


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Solid State Electrochemistry I


Solid State Electrochemistry I

Author: Vladislav V. Kharton

language: en

Publisher: John Wiley & Sons

Release Date: 2009-07-10


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The only comprehensive handbook on this important and rapidly developing topic combines fundamental information with a brief overview of recent advances in solid state electrochemistry, primarily targeting specialists working in this scientific field. Particular attention is focused on the most important developments performed during the last decade, methodological and theoretical aspects of solid state electrochemistry, as well as practical applications. The highly experienced editor has included chapters with critical reviews of theoretical approaches, experimental methods and modeling techniques, providing definitions and explaining relevant terminology as necessary. Several other chapters cover all the key groups of the ion-conducting solids important for practice, namely cationic, protonic, oxygen-anionic and mixed conductors, but also conducting polymer and hybrid materials. Finally, the whole is rounded off by brief surveys of advances in the fields of fuel cells, solid-state batteries, electrochemical sensors, and other applications of ion-conducting solids. Due to the very interdisciplinary nature of this topic, this is of great interest to material scientists, polymer chemists, physicists, and industrial scientists, too.