Description

Book Synopsis
Thermoelectric devices convert a heat flux directly into electrical power. They afford opportunities to achieve efficiency savings in a variety of applications, through the conversion of otherwise waste heat into useful electrical energy. Operated in reverse mode, they provide effective thermal management in areas ranging from cooling of electronic components to battery conditioning in electric vehicles. Implementation of thermoelectric technology requires materials with improved performance and stability, containing readily-available and inexpensive elements. A range of thermoelectric materials for use in different temperature regimes has emerged. Knowledge of the complex relationship between composition, structure and physical properties is central to understanding the performance of these advanced materials. This book provides both an introduction to the field of thermoelectrics and a survey of the state-of-the-art. Chapters review the important new families of advanced materials that have emerged and taken the field beyond traditional thermoelectric materials such as Bi2Te3, PbTe and SiGe. The emphasis is on the relationship between chemical composition, structure over a range of length scales and the physical properties that underlie performance. Edited by a leader in the field, and with contributions from global experts, Inorganic Thermoelectric Materials serves as an introduction to thermoelectric materials and is accessible to advanced undergraduates and postgraduates, as well as experienced researchers

Table of Contents
Synthesis and Property Measurements of Thermoelectric Materials; Theoretical Foundations and Modelling of Inorganic Thermoelectric Materials; Nanostructuring Effects in Bulk Thermoelectrics and their Composites; High-performance Thermoelectric Energy Conversion Based on Lead-free IV-VI Metal Chalcogenides; Intermetallic Thermoelectrics – Design and Preparation of Half-Heuslers, Skutterudites and Zintl-type Materials

Inorganic Thermoelectric Materials: From

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    A Hardback by Anthony V Powell

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      View other formats and editions of Inorganic Thermoelectric Materials: From by Anthony V Powell

      Publisher: Royal Society of Chemistry
      Publication Date: Publication Date: 06/12/2021
      ISBN13: 9781788017596, 978-1788017596
      ISBN10: 1788017595

      Description

      Book Synopsis
      Thermoelectric devices convert a heat flux directly into electrical power. They afford opportunities to achieve efficiency savings in a variety of applications, through the conversion of otherwise waste heat into useful electrical energy. Operated in reverse mode, they provide effective thermal management in areas ranging from cooling of electronic components to battery conditioning in electric vehicles. Implementation of thermoelectric technology requires materials with improved performance and stability, containing readily-available and inexpensive elements. A range of thermoelectric materials for use in different temperature regimes has emerged. Knowledge of the complex relationship between composition, structure and physical properties is central to understanding the performance of these advanced materials. This book provides both an introduction to the field of thermoelectrics and a survey of the state-of-the-art. Chapters review the important new families of advanced materials that have emerged and taken the field beyond traditional thermoelectric materials such as Bi2Te3, PbTe and SiGe. The emphasis is on the relationship between chemical composition, structure over a range of length scales and the physical properties that underlie performance. Edited by a leader in the field, and with contributions from global experts, Inorganic Thermoelectric Materials serves as an introduction to thermoelectric materials and is accessible to advanced undergraduates and postgraduates, as well as experienced researchers

      Table of Contents
      Synthesis and Property Measurements of Thermoelectric Materials; Theoretical Foundations and Modelling of Inorganic Thermoelectric Materials; Nanostructuring Effects in Bulk Thermoelectrics and their Composites; High-performance Thermoelectric Energy Conversion Based on Lead-free IV-VI Metal Chalcogenides; Intermetallic Thermoelectrics – Design and Preparation of Half-Heuslers, Skutterudites and Zintl-type Materials

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