Intermediate Temperature Solid Oxide Fuel Cells Electrolytes, Electrodes and Interconnects

“Intermediate Temperature Solid Oxide Fuel Cells Electrolytes, Electrodes and Interconnects” by Gurbinder Kaur, published by Elsevier Science on November 22, 2019, is a comprehensive resource that delves into the principles of intermediate solid oxide fuel cell technology. This edition, spanning 516 pages, offers readers a thorough understanding of the various components that constitute Solid Oxide Fuel Cells (SOFC), including electrodes, pyrochlore/perovskite/oxide electrolytes, and interconnects.
The book begins with an exploration of the thermodynamics, physiochemical, and electrochemical behavior of SOFCs, providing foundational knowledge essential for both researchers and students in the field. It further examines specific materials such as low-temperature brownmillerites and aurivillius electrolytes, along with pyrochlore interconnects. This detailed analysis serves as a vital reference for those engaged in technology and engineering, particularly in materials science and solid-state chemistry.
Official synopsis Publisher
Intermediate Temperature Solid Oxide Fuel Cells: Electrolytes, Electrodes and Interconnects introduces the fundamental principles of intermediate solid oxide fuel cells technology. It provides the reader with a broad understanding and practical knowledge of the electrodes, pyrochlore/perovskite/oxide electrolytes and interconnects which form the backbone of the Solid Oxide Fuel Cell (SOFC) unit. Opening with an introduction to the thermodynamics, physiochemical and electrochemical behavior of Solid Oxide Fuel Cells (SOFC), the book also discusses specific materials, including low temperature brownmillerites and aurivillius electrolytes, as well as pyrochlore interconnects.
This book analyzes the basic concepts, providing cutting-edge information for both researchers and students. It is a complete reference for Intermediate Solid Oxide Fuel Cells technology that will be a vital resource for those working in materials science, fuel cells and solid state chemistry.
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