Thermoelectricity and Advanced Thermoelectric Materials

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· Woodhead Publishing
E‑kniha
356
Počet strán
Vhodné
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Táto e‑kniha

Thermoelectricity and Advanced Thermoelectric Materials reviews emerging thermoelectric materials, including skutterudites, clathrates, and half-Heusler alloys. In addition, the book discusses a number of oxides and silicides that have promising thermoelectric properties. Because 2D materials with high figures of merit have emerged as promising candidates for thermoelectric applications, this book presents an updated introduction to the field of thermoelectric materials, including recent advances in materials synthesis, device modeling, and design. Finally, the book addresses the theoretical difficulties and methodologies of computing the thermoelectric properties of materials that can be used to understand and predict highly efficient thermoelectric materials. This book is a key reference for materials scientists, physicists, and engineers in energy. - Reviews the most relevant, emerging thermoelectric materials, including 2D materials, skutterudites, clathrates and half-Heusler alloys - Focuses on how electronic structure engineering can lead to improved materials performance for thermoelectric energy conversion applications - Includes the latest advances in the synthesis, modeling and design of advanced thermoelectric materials

O autorovi

Dr. Ranjan Kumar is a Professor in the Department of Physics at King Abdulaziz University, Jeddah, Kingdom of Saudi Arabia - on leave from Panjab University, Chandigarh, India. Dr. Kumar’s field of specialization is theoretical condensed matter physics, and his research interests include: Fullerenes and carbon materials, Heusler alloys for spintronic applications, dilute magnetic semiconductors, electronic and thermoelectric properties of materials, and superconductors.

Dr. Ranber Singh is an Assistant Professor at the Sri Guru Gobind Singh College, Chandigarh, India. Dr. Singh’s research interests include the theoretical study of nanostructured materials and other condensed matter systems.

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