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Synthesis and optimization of chalco...
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Xiao, Chong.
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Synthesis and optimization of chalcogenides quantum dots thermoelectric materials
Record Type:
Electronic resources : Monograph/item
Title/Author:
Synthesis and optimization of chalcogenides quantum dots thermoelectric materials/ by Chong Xiao.
Author:
Xiao, Chong.
Published:
Berlin, Heidelberg :Springer Berlin Heidelberg : : 2016.,
Description:
xii, 114 p. :ill., digital ;24 cm.
[NT 15003449]:
Introduction -- Superionic Phase Transition Optimizing Thermoelectric Performance in Silver Chalcogenides Nanocrystals -- Two Metal Ion Exchange Realizing Efficient Thermoelectric Properties and p-n-p Conduction Type Transition -- Toward "Phonon Glass Electron Crystal" in Solid-Solutioned Homojunction Nanoplates with Disordered Lattice -- Magnetic Ions Dope Wide Band Gap Semiconductor Nanocrystals Realizing Decoupled Optimization of Thermoelectric Properties -- Magnetic Ions Fully Substituted Wide Band Gap Semiconductor Nanocrystals for Decoupled Optimization of Thermoelectric Properties -- Experimental Part.
Contained By:
Springer eBooks
Subject:
Thermoelectric materials. -
Online resource:
http://dx.doi.org/10.1007/978-3-662-49617-6
ISBN:
9783662496176$q(electronic bk.)
Synthesis and optimization of chalcogenides quantum dots thermoelectric materials
Xiao, Chong.
Synthesis and optimization of chalcogenides quantum dots thermoelectric materials
[electronic resource] /by Chong Xiao. - Berlin, Heidelberg :Springer Berlin Heidelberg :2016. - xii, 114 p. :ill., digital ;24 cm. - Springer theses,2190-5053. - Springer theses..
Introduction -- Superionic Phase Transition Optimizing Thermoelectric Performance in Silver Chalcogenides Nanocrystals -- Two Metal Ion Exchange Realizing Efficient Thermoelectric Properties and p-n-p Conduction Type Transition -- Toward "Phonon Glass Electron Crystal" in Solid-Solutioned Homojunction Nanoplates with Disordered Lattice -- Magnetic Ions Dope Wide Band Gap Semiconductor Nanocrystals Realizing Decoupled Optimization of Thermoelectric Properties -- Magnetic Ions Fully Substituted Wide Band Gap Semiconductor Nanocrystals for Decoupled Optimization of Thermoelectric Properties -- Experimental Part.
This thesis focuses on chalcogenide compound quantum dots with special crystal structures and behaviors in an effort to achieve the synergistic optimization of electrical and thermal transport for high-efficiency thermoelectric materials. The controllability and large-scale synthesis of chalcogenide quantum dots are realized through simple colloid synthesis, and the synergistic optimization of the materials' electrical and thermal transport properties is successfully achieved. Furthermore, the book explores the mechanism involved in the integration of high thermoelectric performance and reversible p-n semiconducting switching in bimetal chalcogenide semiconductors. As such, the thesis will be of interest to university researchers and graduate students in the materials science, chemistry and physics.
ISBN: 9783662496176$q(electronic bk.)
Standard No.: 10.1007/978-3-662-49617-6doiSubjects--Topical Terms:
726755
Thermoelectric materials.
LC Class. No.: TK2950
Dewey Class. No.: 620.196
Synthesis and optimization of chalcogenides quantum dots thermoelectric materials
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Introduction -- Superionic Phase Transition Optimizing Thermoelectric Performance in Silver Chalcogenides Nanocrystals -- Two Metal Ion Exchange Realizing Efficient Thermoelectric Properties and p-n-p Conduction Type Transition -- Toward "Phonon Glass Electron Crystal" in Solid-Solutioned Homojunction Nanoplates with Disordered Lattice -- Magnetic Ions Dope Wide Band Gap Semiconductor Nanocrystals Realizing Decoupled Optimization of Thermoelectric Properties -- Magnetic Ions Fully Substituted Wide Band Gap Semiconductor Nanocrystals for Decoupled Optimization of Thermoelectric Properties -- Experimental Part.
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This thesis focuses on chalcogenide compound quantum dots with special crystal structures and behaviors in an effort to achieve the synergistic optimization of electrical and thermal transport for high-efficiency thermoelectric materials. The controllability and large-scale synthesis of chalcogenide quantum dots are realized through simple colloid synthesis, and the synergistic optimization of the materials' electrical and thermal transport properties is successfully achieved. Furthermore, the book explores the mechanism involved in the integration of high thermoelectric performance and reversible p-n semiconducting switching in bimetal chalcogenide semiconductors. As such, the thesis will be of interest to university researchers and graduate students in the materials science, chemistry and physics.
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Chemistry and Materials Science (Springer-11644)
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EB TK2950 .X6 2016
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