Description
Advanced Ceramics for Energy Storage, Thermoelectrics and Photonics describes recent progress in ceramic synthesis and applications in the areas of rechargeable batteries, capacitors, fuel cells, ferroelectrics, thermoelectrics, and inorganic luminescence materials. Both fundamental scientific advancements and technological breakthroughs in terms of new ceramic chemistries, new synthesis methodologies, and new applications are discussed in detail. The latest developments in advanced electrodes, ionic conductors, catalysts, thermoelectric ceramics, and luminescent powders/ceramics and their applications are also covered. With its focus on energy-related applications, the book will be a valuable reference resource for new researchers, academics, and postgraduate students who are interested in delving deeper into energy-related materials research, in particular, the areas of electronic and optical ceramics and their potential applications.- Covers three key areas of ceramics science: electrochemical energy conversion, thermoelectrics, and photonics- An entire section that explains the fundamental theory that lies behind new ceramic chemistries and synthesis methodologies- Complex perspectives are explained, such as solid electrolytes and the coupling between thermal and electric phenomena and optical properties as well as electrodes, ionic conductors, catalysts, thermoelectric ceramics and their applications- Discusses challenges that new ceramic technology is currently facing and the potential solutions for commercial success
Table of Contents
Section 1: Fundamentals of electronic ceramics1.Fundamentals of electronic ceramics2.Processing of ceramicsSection 2: Ceramics for energy3.Ceramics for lithium positive electrode4.Solid-state inorganic electrolytes (oxides, sulfides, and halides)5.Polymer-ceramic composite solid-state electrolytes6.Ceramics for supercapacitors7.Ceramics for solid oxide fuel cells8.High-entropy oxides for energy storage and catalysis9.Advanced AlN ceramic materials for energy-efficient communication devicesSection 3: Thermoelectrics10.Fundamentals of thermoelectrics11.Synthesis method of thermoelectrics12.Characterizations of thermoelectric ceramics13.High-performance thermoelectric oxide ceramics14.High-performance thermoelectric ceramics and their applicationsSection 4: Ceramics for photonics15.Fundamentals of ceramics for photonics applications16.Ceramics phosphor powders17.Luminescent glass-ceramics and applications18.Luminescent transparent ceramic
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