UID:
almafu_9958130439602883
Umfang:
1 online resource (1016 p.)
ISBN:
1-315-22039-3
,
1-281-08139-6
,
9786611081393
,
1-4200-3890-7
Inhalt:
Ten years ago, D.M. Rowe introduced the bestselling CRC Handbook of Thermoelectrics to wide acclaim. Since then, increasing environmental concerns, desire for long-life electrical power sources, and continued progress in miniaturization of electronics has led to a substantial increase in research activity involving thermoelectrics. Reflecting the latest trends and developments, the Thermoelectrics Handbook: Macro to Nano is an extension of the earlier work and covers the entire range of thermoelectrics disciplines.Serving as a convenient reference as well as a thorough introduction to
Anmerkung:
Description based upon print version of record.
,
Front cover; Preface; Contributors; Contents; List of Symbols; SECTION I: General Principles and Theoretical Considerations; Chapter 1. General Principles and Basic Considerations; Chapter 2. Modern Thermodynamic Theory of Thermoelectricity; Chapter 3. Thermoelectric Phenomena under Large Temperature Gradients; Chapter 4. Minority Carriers and Thermoelectric Effects in Bipolar Devices; Chapter 5. Effects of Charge Carriers' Interactions on Seebeck Coefficients; Chapter 6. Thermal Conductivity of Semiconductors with Complex Crystal Structures
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Chapter 7. A Chemical Approach to the First-Principles Modeling of Novel Thermoelectric MaterialsChapter 8. Recent Trends for the Design and Optimization of Thermoelectric Materials - A Theoretical Perspective; Chapter 9. Thermoelectric Power Generation: Efficiency and Compatibility; Chapter 10. A New Upper Limit to the Thermoelectric Figure-of-Merit; Chapter 11. Thermoelectric Module Design Theories; Chapter 12. Modeling and Characterization of Power Generation Modules Based on Bulk Materials; Chapter 13. Energy Conversion Using Diode-Like Structures
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Chapter 14. Size Effects on Thermal TransportChapter 15. Thermoelectric Aspects of Strongly Correlated Electron Systems; Chapter 16. Theory and Modeling in Nanostructured Thermoelectrics; Chapter 17. Thermoelectric Power of Carbon Nanotubes; Chapter 18. Phonon-Drag Thermopower of Low-Dimensional Semiconductor Structures; SECTION II: Material Preparation and Measurements; Chapter 19. Solid-State Synthesis of Thermoelectric Materials; Chapter 20. Review of Methods of Thermoelectric Materials Mass Production; Chapter 21. Structural Studies of Thermoelectric Materials
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Chapter 22. Measurements of Resistivity and Thermopower: Principles and Practical RealizationChapter 23. Electrical and Thermal Transport Measurement Techniques for Evaluation of the Figure-of-Merit of Bulk Thermoelectric Materials; Chapter 24. Measurement of the Thermal Conductivity of Thin Films; Chapter 25. Solvothermal Synthesis of Nanostructured Thermoelectric Materials; Chapter 26. Approaches to Thermoelectric Standardization; SECTION III: Thermoelectric Materials; Chapter 27. Thermoelectric Properties of Bismuth Antimony Telluride Solid Solutions
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Chapter 28. Bi - Sb Alloys:Thermopower in Magnetic FieldChapter 29. Thermoelectrics on the Base of Solid Solutions of Mg2BIV Compounds (BIV = Si, Ge, Sn); Chapter 30. Thermoelectric Properties of the Group V Semimetals; Chapter 31. Thermoelectrics of Transition Metal Silicides; Chapter 32. Formation and Crystal Chemistry of Clathrates; Chapter 33. Structure, Thermal Conductivity, and Thermoelectric Properties of Clathrate Compounds; Chapter 34. Skutterudite-Based Thermoelectrics; Chapter 35. Oxide Thermoelectrics
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Chapter 36. Thermoelectric Properties of Electrically Conducting Organic Materials
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English
Weitere Ausg.:
ISBN 0-8493-2264-2
Sprache:
Englisch
DOI:
10.1201/9781420038903