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Advanced Ceramics for Energy Storage, Thermoelectrics and Photonics (Elsevier Series on Advanced Ceramic Materials) - Softcover

Buch 11 von 17: Elsevier Series on Advanced Ceramic Materials
 
9780323907613: Advanced Ceramics for Energy Storage, Thermoelectrics and Photonics (Elsevier Series on Advanced Ceramic Materials)

Inhaltsangabe


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.

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Über die Autorinnen und Autoren

Dr. Peng Cao is an associate professor of Materials Engineering in the Department of Chemical and Materials Engineering, the University of Auckland, New Zealand. His group focuses on developing titanium powder technologies and new energy-storage materials. He has published over 200 journal articles, and five edited/authored book. He has organized 10 international conferences, of which he chaired or co-chaired three, and delivered approximately 20 keynotes/invited talks.

Dr. Zhigang Chen is Professor in Energy Materials at the Queensland University of Technology, Australia. His expertise is in thermoelectrics, nanoelectronics, optoelectronics, and advanced microscopy. Prof. Dr. Chen has contributed more than 380 original journal publications, including top ranking journals, such as Chemical Reviews, Nature Nanotechnology, Energy & Environmental Science, Progress Materials Science, Journal of the American Chemical Society, Angewandte Chemie-International Edition, Advanced Materials, Advanced Energy Materials, and Advanced Functional Materials.

Dr. Zhiguo Xia is currently a professor in the State Key Laboratory of Luminescent Materials and Devices, South China University of Technology. Professor Xia’s research focuses on luminescent inorganic solids with a multi-disciplinary background covering luminescent materials, solid-state chemistry, crystal chemistry, X-ray diffraction, optics, and optoelectronic devices. Within his group, he has published more than 200 papers on luminescent inorganic solids in international journals with more than 8000 citations. He is now serving as an Associate Editor, Journal of Luminescence (Elsevier, Jan. 2017-present) and Editorial Advisory Board Member, Journal of Physical Chemistry Letters (ACS, Jan. 2020-present).

Von der hinteren Coverseite

Ceramic materials have long been admired and used in mechanical structures, taking advantage of their thermal and chemical stability. Some of their other properties can’t be over-emphasized such as unique electrical, optical and magnetic properties that have found unprecedented applications in energy conversion and storage, communication, microelectronics, and smart devices. In the realm of electronic ceramics; ceramic materials for energy conversion and storage have seen significant advances in recent decades, which align well with rapid-paced technological development in new battery and other energy-related devices.

Advanced Ceramics: Energy Storage, Thermoelectrics and Photonics describes recent progress in ceramic synthesis and applications in the areas of rechargeable batteries, capacitors, fuel cells, ferroelectrics, and thermoelectrics. 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, and thermoelectric 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.

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