Thermoelectrics : basic principles and new materials developments /

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Bibliographic Details
Author / Creator:Nolas, G. S. (George S.), 1962-
Imprint:Berlin ; New York : Springer, 2001.
Description:viii, 292 p. : ill. ; 24 cm.
Language:English
Series:Springer series in materials science ; v. 45
Subject:
Format: Print Book
URL for this record:http://pi.lib.uchicago.edu/1001/cat/bib/4635579
Hidden Bibliographic Details
Other authors / contributors:Sharp, J. (Jeffrey), 1964-
Goldsmid, H. J.
ISBN:354041245X (alk. paper)
Notes:Includes bibliographical references and index.

MARC

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300 |a viii, 292 p. :  |b ill. ;  |c 24 cm. 
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504 |a Includes bibliographical references and index. 
505 0 0 |g 1.  |t Historical Development --  |g 1.1.  |t Introduction --  |g 1.2.  |t Thermoelectric and Thermomagnetic Phenomena --  |g 1.3.  |t Peltier Cooling and the Thermoelectric Figure of Merit --  |g 1.4.  |t Efficiency of Thermoelectric Power Generation --  |g 1.5.  |t Ettingshausen Cooling and the Thermomagnetic Figure of Merit --  |g 2.  |t Transport of Heat and Electricity in Solids --  |g 2.1.  |t Crystalline Solids --  |g 2.2.  |t Heat Conduction by the Lattice --  |g 2.3.  |t Band Theory of Solids --  |g 2.4.  |t Electron Transport in a Zero Magnetic Field --  |g 2.5.  |t Effect of a Magnetic Field --  |g 2.6.  |t Nonparabolic Bands --  |g 2.7.  |t Phonon Drag --  |g 3.  |t Selection and Optimization Criteria --  |g 3.1.  |t Selection Criteria for Thermoelectric Materials --  |g 3.2.  |t Influence of Carrier Concentration on the Properties of Semiconductors --  |g 3.3.  |t Optimization of Electronic Properties --  |g 3.4.  |t Minimizing Thermal Conductivity --  |g 3.5.  |t Anisotropic Thermoelements --  |g 3.6.  |t Thermoelectric Cooling at Very Low Temperatures --  |g 4.  |t Measurement and Characterization --  |g 4.1.  |t Electrical Conductivity --  |g 4.2.  |t Seebeck Coefficient --  |g 4.3.  |t Thermal Conductivity --  |g 4.4.  |t Figure of Merit --  |g 4.5.  |t Thermogalvanomagnetic Effects --  |g 5.  |t Review of Establishment Materials and Devices --  |g 5.1.  |t Group V[subscript 2]-VI[subscript 3] --  |g 5.2.  |t Elements of Group V and Their Alloys --  |g 5.3.  |t Materials for Thermoelectric Generators --  |g 5.4.  |t Production of Materials --  |g 5.5.  |t Design of Modules --  |g 6.  |t The Phonon-Glass Electron-Crystal Approach to Thermoelectric Materials Research --  |g 6.1.  |t Requirements for Good Thermoelectric Materials and the PGEC Approach --  |g 6.2.  |t The Skutterudite Material System --  |g 6.3.  |t Clathrate Compounds --  |g 7.  |t Complex Chalcogenide Structure --  |g 7.1.  |t Introduction --  |g 7.2.  |t New Materials with Potential for Thermoelectric Applications --  |g 7.3.  |t Pentatelluride Compounds --  |g 7.4.  |t TI[subscript 2]SnTe[subscript 5] and TI[subscript 2]GeTe[subscript 5] --  |g 8.  |t Low-Dimensional Thermoelectric Materials --  |g 8.1.  |t Fine-Grained Si-Ge and Thin-Film Bi --  |g 8.2.  |t Survey of Size Effects --  |g 8.3.  |t Experimental Structures --  |g 8.4.  |t Practical Considerations --  |g 8.5.  |t Summary --  |g 9.  |t Thermionic Refrigeration --  |g 9.1.  |t The Vacuum Diode --  |g 9.2.  |t Solid-State Thermionic Devices. 
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