Synthesis and Physical Properties Investigations of Intermetallic Clathrates

Intermetallic clathrates have long been of interest for materials science research. The promise these materials hold for useful applications ranges from thermoelectrics to photovoltaics and optoelectronics to potentially ultra-hard materials and magnetic cooling applications. Their unique physical p...

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Main Author: Stefanoski, Stevce
Format: Others
Published: Scholar Commons 2010
Subjects:
Online Access:https://scholarcommons.usf.edu/etd/1780
https://scholarcommons.usf.edu/cgi/viewcontent.cgi?article=2779&context=etd
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spelling ndltd-USF-oai-scholarcommons.usf.edu-etd-27792019-12-11T15:44:59Z Synthesis and Physical Properties Investigations of Intermetallic Clathrates Stefanoski, Stevce Intermetallic clathrates have long been of interest for materials science research. The promise these materials hold for useful applications ranges from thermoelectrics to photovoltaics and optoelectronics to potentially ultra-hard materials and magnetic cooling applications. Their unique physical properties are intimately related to their intriguing structural properties. Thus a fundamental understanding of the chemistry and physics of inorganic clathrates offers the possibility to assess their potential for use in the various applications mentioned above. The purpose of the current work is to expand the current knowledge of the synthetic routes for obtaining clathrate materials, their structural, chemical, and physical properties, particularly those that from in the type I, II and VIII crystal structures. New synthesis routes are presented and used for preparation of single crystals of Na8Si46 and Na24Si136. Single-crystal X-ray analysis, and resistivity, Seebeck coefficient and thermal conductivity measurements are presented. In addition, two "inverse" clathrates with compositions Sn24P19.3Br8 and Sn17Zn7P22Br8 have been characterized in terms of their transport properties. Since the magnetic refrigeration based on the magnetocaloric effect is a topic of great interest, type VIII Eu8Ga16Ge30 clathrates are also explored in terms of their application for magnetic cooling. 2010-04-12T07:00:00Z text application/pdf https://scholarcommons.usf.edu/etd/1780 https://scholarcommons.usf.edu/cgi/viewcontent.cgi?article=2779&context=etd default Graduate Theses and Dissertations Scholar Commons single crystal transport properties silicon thermoelectrics Seebeck American Studies Arts and Humanities
collection NDLTD
format Others
sources NDLTD
topic single crystal
transport properties
silicon
thermoelectrics
Seebeck
American Studies
Arts and Humanities
spellingShingle single crystal
transport properties
silicon
thermoelectrics
Seebeck
American Studies
Arts and Humanities
Stefanoski, Stevce
Synthesis and Physical Properties Investigations of Intermetallic Clathrates
description Intermetallic clathrates have long been of interest for materials science research. The promise these materials hold for useful applications ranges from thermoelectrics to photovoltaics and optoelectronics to potentially ultra-hard materials and magnetic cooling applications. Their unique physical properties are intimately related to their intriguing structural properties. Thus a fundamental understanding of the chemistry and physics of inorganic clathrates offers the possibility to assess their potential for use in the various applications mentioned above. The purpose of the current work is to expand the current knowledge of the synthetic routes for obtaining clathrate materials, their structural, chemical, and physical properties, particularly those that from in the type I, II and VIII crystal structures. New synthesis routes are presented and used for preparation of single crystals of Na8Si46 and Na24Si136. Single-crystal X-ray analysis, and resistivity, Seebeck coefficient and thermal conductivity measurements are presented. In addition, two "inverse" clathrates with compositions Sn24P19.3Br8 and Sn17Zn7P22Br8 have been characterized in terms of their transport properties. Since the magnetic refrigeration based on the magnetocaloric effect is a topic of great interest, type VIII Eu8Ga16Ge30 clathrates are also explored in terms of their application for magnetic cooling.
author Stefanoski, Stevce
author_facet Stefanoski, Stevce
author_sort Stefanoski, Stevce
title Synthesis and Physical Properties Investigations of Intermetallic Clathrates
title_short Synthesis and Physical Properties Investigations of Intermetallic Clathrates
title_full Synthesis and Physical Properties Investigations of Intermetallic Clathrates
title_fullStr Synthesis and Physical Properties Investigations of Intermetallic Clathrates
title_full_unstemmed Synthesis and Physical Properties Investigations of Intermetallic Clathrates
title_sort synthesis and physical properties investigations of intermetallic clathrates
publisher Scholar Commons
publishDate 2010
url https://scholarcommons.usf.edu/etd/1780
https://scholarcommons.usf.edu/cgi/viewcontent.cgi?article=2779&context=etd
work_keys_str_mv AT stefanoskistevce synthesisandphysicalpropertiesinvestigationsofintermetallicclathrates
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