Please use this identifier to cite or link to this item: http://localhost/handle/Hannan/164
Title: Multicomponent Silicides for Thermoelectric Materials
Other Titles: Phase Stabilities, Synthesis, and Device Tailoring /
Authors: Tedenac, Jean-Claude. ;
subject: Materials Science;Energy harvesting. ;;Inorganic chemistry. ;;Thermodynamics. ;;Heat engineering. ;;Heat transfer. ;;Mass transfer. ;;Sustainable development. ;;Optical materials. ;;Electronic materials. ;;Ceramics. ;;Glass. ;;Composites (Materials). ;;Composite materials. ;;Materials Science;Ceramics, Glass, Composites, Natural Materials. ;;Energy Harvesting. ;;Engineering Thermodynamics, Heat and Mass Transfer. ;;Inorganic Chemistry. ;;Optical and Electronic Materials. ;;Sustainable Development. ;
Year: 2017
place: Cham :
Publisher: Springer International Publishing :
Imprint: Springer,
Series/Report no.: SpringerBriefs in Materials, ; 2192-1091. ;
SpringerBriefs in Materials, ; 2192-1091. ;
Abstract: This book provides a comprehensive review of the current state of the art in silicon compounds for thermoelectric applications. Silicides are materials with good initial thermoelectric properties, which can be enhanced through tuning of their micro- and macrostructure. These compounds present various conduction mechanisms and complex band structures. Moreover, some are isotropic, and others anisotropic, which is highly beneficial for device tailoring. Silicides are a particularly attractive material for sensors, thermoelectric generators, and other applications because they are environmentally friendly, abundant, and low cost. This concise volume covers fundamentals and applications for an audience of materials scientists, chemists, solid-state physicists, and engineers. ;
Description: 

SpringerLink (Online service) ;
Printed edition: ; 9783319582672. ;

URI: http://localhost/handle/Hannan/164
ISBN: 9783319582689 ;
9783319582672 (print) ;
More Information: IX, 46 p. 26 illus., 18 illus. in color. ; online resource. ;
Appears in Collections:مهندسی مدیریت ساخت

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Title: Multicomponent Silicides for Thermoelectric Materials
Other Titles: Phase Stabilities, Synthesis, and Device Tailoring /
Authors: Tedenac, Jean-Claude. ;
subject: Materials Science;Energy harvesting. ;;Inorganic chemistry. ;;Thermodynamics. ;;Heat engineering. ;;Heat transfer. ;;Mass transfer. ;;Sustainable development. ;;Optical materials. ;;Electronic materials. ;;Ceramics. ;;Glass. ;;Composites (Materials). ;;Composite materials. ;;Materials Science;Ceramics, Glass, Composites, Natural Materials. ;;Energy Harvesting. ;;Engineering Thermodynamics, Heat and Mass Transfer. ;;Inorganic Chemistry. ;;Optical and Electronic Materials. ;;Sustainable Development. ;
Year: 2017
place: Cham :
Publisher: Springer International Publishing :
Imprint: Springer,
Series/Report no.: SpringerBriefs in Materials, ; 2192-1091. ;
SpringerBriefs in Materials, ; 2192-1091. ;
Abstract: This book provides a comprehensive review of the current state of the art in silicon compounds for thermoelectric applications. Silicides are materials with good initial thermoelectric properties, which can be enhanced through tuning of their micro- and macrostructure. These compounds present various conduction mechanisms and complex band structures. Moreover, some are isotropic, and others anisotropic, which is highly beneficial for device tailoring. Silicides are a particularly attractive material for sensors, thermoelectric generators, and other applications because they are environmentally friendly, abundant, and low cost. This concise volume covers fundamentals and applications for an audience of materials scientists, chemists, solid-state physicists, and engineers. ;
Description: 

SpringerLink (Online service) ;
Printed edition: ; 9783319582672. ;

URI: http://localhost/handle/Hannan/164
ISBN: 9783319582689 ;
9783319582672 (print) ;
More Information: IX, 46 p. 26 illus., 18 illus. in color. ; online resource. ;
Appears in Collections:مهندسی مدیریت ساخت

Files in This Item:
File Description SizeFormat 
9783319582689.pdf2.44 MBAdobe PDFThumbnail
Preview File
Title: Multicomponent Silicides for Thermoelectric Materials
Other Titles: Phase Stabilities, Synthesis, and Device Tailoring /
Authors: Tedenac, Jean-Claude. ;
subject: Materials Science;Energy harvesting. ;;Inorganic chemistry. ;;Thermodynamics. ;;Heat engineering. ;;Heat transfer. ;;Mass transfer. ;;Sustainable development. ;;Optical materials. ;;Electronic materials. ;;Ceramics. ;;Glass. ;;Composites (Materials). ;;Composite materials. ;;Materials Science;Ceramics, Glass, Composites, Natural Materials. ;;Energy Harvesting. ;;Engineering Thermodynamics, Heat and Mass Transfer. ;;Inorganic Chemistry. ;;Optical and Electronic Materials. ;;Sustainable Development. ;
Year: 2017
place: Cham :
Publisher: Springer International Publishing :
Imprint: Springer,
Series/Report no.: SpringerBriefs in Materials, ; 2192-1091. ;
SpringerBriefs in Materials, ; 2192-1091. ;
Abstract: This book provides a comprehensive review of the current state of the art in silicon compounds for thermoelectric applications. Silicides are materials with good initial thermoelectric properties, which can be enhanced through tuning of their micro- and macrostructure. These compounds present various conduction mechanisms and complex band structures. Moreover, some are isotropic, and others anisotropic, which is highly beneficial for device tailoring. Silicides are a particularly attractive material for sensors, thermoelectric generators, and other applications because they are environmentally friendly, abundant, and low cost. This concise volume covers fundamentals and applications for an audience of materials scientists, chemists, solid-state physicists, and engineers. ;
Description: 

SpringerLink (Online service) ;
Printed edition: ; 9783319582672. ;

URI: http://localhost/handle/Hannan/164
ISBN: 9783319582689 ;
9783319582672 (print) ;
More Information: IX, 46 p. 26 illus., 18 illus. in color. ; online resource. ;
Appears in Collections:مهندسی مدیریت ساخت

Files in This Item:
File Description SizeFormat 
9783319582689.pdf2.44 MBAdobe PDFThumbnail
Preview File