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Structure, phase composition, and thermoelectric properties of YbxCo4Sb12 and their dependence on synthesis method

  • We present a combined microscopic and macroscopic study of YbxCo4Sb12 skutterudites for a range of nominal filling fractions, 0.15 < x < 0.75. The samples were synthesized using two different methods — a melt–quench–annealing route in evacuated quartz ampoules and a non-equilibrium ball-mill route — for which we directly compare the crystal structure and phase composition as well as the thermoelectric properties. Rietveld refinements of high-quality neutron powder diffraction data reveal about a 30–40% smaller Yb occupancy on the crystallographic 2a site than nominally expected for both synthesis routes. We observe a maximum filling fraction of at least 0.439(7) for a sample synthesized by the ball-mill routine, exceeding theoretical predictions of the filling fraction limit of 0.2–0.3. A single secondary phase of CoSb2 is observed in ball-mill-synthesized samples, while two secondary phases, CoSb2 and YbSb2, are detected for samples prepared by the ampoule route. A detrimental influence of the secondary phases on the thermoelectricWe present a combined microscopic and macroscopic study of YbxCo4Sb12 skutterudites for a range of nominal filling fractions, 0.15 < x < 0.75. The samples were synthesized using two different methods — a melt–quench–annealing route in evacuated quartz ampoules and a non-equilibrium ball-mill route — for which we directly compare the crystal structure and phase composition as well as the thermoelectric properties. Rietveld refinements of high-quality neutron powder diffraction data reveal about a 30–40% smaller Yb occupancy on the crystallographic 2a site than nominally expected for both synthesis routes. We observe a maximum filling fraction of at least 0.439(7) for a sample synthesized by the ball-mill routine, exceeding theoretical predictions of the filling fraction limit of 0.2–0.3. A single secondary phase of CoSb2 is observed in ball-mill-synthesized samples, while two secondary phases, CoSb2 and YbSb2, are detected for samples prepared by the ampoule route. A detrimental influence of the secondary phases on the thermoelectric properties is observed for secondary-phase fractions larger than 8 wt % regardless of the kind of secondary phase. The largest figure of merit of all samples with a ZT ∼ 1.0 at 723 K is observed for the sample with a refined Yb content of x2a = 0.159(3), synthesized by the ampoule route.zeige mehrzeige weniger

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Metadaten
Verfasserangaben:Britta Ryll, Andreas SchmitzORCiD, Johannes de BoorORCiDGND, Alexandra FranzORCiD, Pamela S. WhitfieldORCiD, Manfred ReehuisORCiD, Andreas HoserORCiD, Eckhard Müller, Klaus HabichtORCiDGND, Katharina Fritscht
DOI:https://doi.org/10.1021/acsaem.7b00015
ISSN:2574-0962
Titel des übergeordneten Werks (Englisch):ACS applied energy materials
Verlag:American Chemical Society
Verlagsort:Washington
Publikationstyp:Wissenschaftlicher Artikel
Sprache:Englisch
Datum der Erstveröffentlichung:07.12.2017
Erscheinungsjahr:2018
Datum der Freischaltung:23.02.2022
Freies Schlagwort / Tag:ball mill; figure of merit; melt-quench-anneal; neutron powder diffraction; skutterudite; thermoelectric materials; thermoelectric properties
Band:1
Ausgabe:1
Seitenanzahl:19
Erste Seite:113
Letzte Seite:122
Fördernde Institution:DFGGerman Research Foundation (DFG) [Schwerpunktprogramm SPP1386]
Organisationseinheiten:Mathematisch-Naturwissenschaftliche Fakultät / Institut für Physik und Astronomie
DDC-Klassifikation:5 Naturwissenschaften und Mathematik / 53 Physik / 530 Physik
Peer Review:Referiert
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