<div class="csl-bib-body">
<div class="csl-entry">Yan, X., Prokofiev, A., Bauer, E., Rogl, P., Bernardi, J., & Paschen, S. (2017). Dependences of phase stability and thermoelectric properties of type-I clathrate Ba8Cu4.5Si6Ge35.5 on synthesis process parameters. <i>Journal of Alloys and Compounds</i>, <i>725</i>, 783–791. https://doi.org/10.1016/j.jallcom.2017.07.210</div>
</div>
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dc.identifier.issn
0925-8388
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dc.identifier.uri
http://hdl.handle.net/20.500.12708/146766
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dc.description.abstract
Thermoelectric materials are actively considered for waste heat recovery applications. To improve the thermoelectric (TE) performance, nanostructuring to reduce their thermal conductivity has been inferred as an effective approach. Here, we present our investigations of the influence of ball milling and hot pressing process parameters on the chemical and thermoelectric properties of the type-I clathrate Ba8Cu4.5Si6Ge35.5. Powders with very small grain sizes could be obtained by ball milling. However, in contrast to other materials, the ultra-fine powders deteriorate the sintering behavior in the hot pressing process. We suggest that this is mainly due to an oxygen-induced local decomposition of the clathrate phase, which might start from the surface of nanoparticles. Partial decomposition also occurs in sintered samples of low bulk density when they are heated under low vacuum conditions. Overall this leads to the loss of Si/Ge and thus to an enhanced Cu content in the remaining clathrate(s), which deteriorates the TE performance in spite of the reduced thermal conductivity. Thus, keeping the composition and structure of the clathrate stable during the nanostructuring process is essential for reaching high TE performance.
en
dc.language.iso
en
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dc.publisher
ELSEVIER SCIENCE SA
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dc.relation.ispartof
Journal of Alloys and Compounds
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dc.subject
Mechanical Engineering
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dc.subject
Mechanics of Materials
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dc.subject
Materials Chemistry
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dc.subject
Metals and Alloys
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dc.title
Dependences of phase stability and thermoelectric properties of type-I clathrate Ba8Cu4.5Si6Ge35.5 on synthesis process parameters
en
dc.type
Artikel
de
dc.type
Article
en
dc.description.startpage
783
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dc.description.endpage
791
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dc.type.category
Original Research Article
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tuw.container.volume
725
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tuw.journal.peerreviewed
true
-
tuw.peerreviewed
true
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tuw.researchTopic.id
E6
-
tuw.researchTopic.id
M7
-
tuw.researchTopic.name
Sustainable Production and Technologies
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tuw.researchTopic.name
Special and Engineering Materials
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tuw.researchTopic.value
60
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tuw.researchTopic.value
40
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dcterms.isPartOf.title
Journal of Alloys and Compounds
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tuw.publication.orgunit
E138-04 - Forschungsbereich Quantum Materials
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tuw.publication.orgunit
E057-02 - Fachbereich Universitäre Serviceeinrichtung für Transmissions- Elektronenmikroskopie
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tuw.publication.orgunit
E138-03 - Forschungsbereich Functional and Magnetic Materials
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tuw.publisher.doi
10.1016/j.jallcom.2017.07.210
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dc.identifier.eissn
1873-4669
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dc.description.numberOfPages
9
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wb.sci
true
-
wb.sciencebranch
Physik, Astronomie
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wb.sciencebranch.oefos
1030
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wb.facultyfocus
Physik der Materie
de
wb.facultyfocus
Physics of Matter
en
wb.facultyfocus.faculty
E130
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item.cerifentitytype
Publications
-
item.cerifentitytype
Publications
-
item.openairecristype
http://purl.org/coar/resource_type/c_18cf
-
item.openairecristype
http://purl.org/coar/resource_type/c_18cf
-
item.fulltext
no Fulltext
-
item.grantfulltext
none
-
item.languageiso639-1
en
-
item.openairetype
Artikel
-
item.openairetype
Article
-
crisitem.author.dept
E138-04 - Forschungsbereich Quantum Materials
-
crisitem.author.dept
E138-04 - Forschungsbereich Quantum Materials
-
crisitem.author.dept
E138-03 - Forschungsbereich Functional and Magnetic Materials
-
crisitem.author.dept
E138 - Institut für Festkörperphysik
-
crisitem.author.dept
E057-02 - Fachbereich Universitäre Serviceeinrichtung für Transmissions- Elektronenmikroskopie