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Spark Plasma Sintering (SPS)-Assisted Synthesis and Thermoelectric Characterization of Magnéli Phase V6O11
Author(s) -
Markus Joos,
Giacomo Cerretti,
Igor Veremchuk,
Patrick Hofmann,
Hajo Frerichs,
Dalaver H. Anjum,
Τ. Reich,
Ingo Lieberwirth,
Martin Panthöfer,
Wolfgang G. Zeier,
Wolfgang Tremel
Publication year - 2018
Publication title -
inorganic chemistry
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.348
H-Index - 233
eISSN - 1520-510X
pISSN - 0020-1669
DOI - 10.1021/acs.inorgchem.7b02669
Subject(s) - spark plasma sintering , seebeck coefficient , thermoelectric effect , thermoelectric materials , chemistry , vanadium , electrical resistivity and conductivity , rietveld refinement , thermal conductivity , powder diffraction , phase (matter) , sintering , analytical chemistry (journal) , crystal structure , crystallography , materials science , inorganic chemistry , composite material , thermodynamics , microstructure , physics , organic chemistry , chromatography , electrical engineering , engineering
The Magnéli phase V 6 O 11 was synthesized in gram amounts from a powder mixture of V 6 O 11 /V 7 O 13 and vanadium metal, using the spark plasma sintering (SPS) technique. Its structure was determined with synchrotron X-ray powder diffraction data from a phase-pure sample synthesized by conventional solid-state synthesis. A special feature of Magnéli-type oxides is a combination of crystallographic shear and intrinsic disorder that leads to relatively low lattice thermal conductivities. SPS prepared V 6 O 11 has a relatively low thermal conductivity of κ = 2.72 ± 0.06 W (m K) -1 while being a n-type conductor with an electrical conductivity of σ = 0.039 ± 0.005 (μΩ m) -1 , a Seebeck coefficient of α = -(35 ± 2) μV K -1 , which leads to a power factor of PF = 4.9 ± 0.8 × 10 -5 W (m K 2 ) -1 at ∼600 K. Advances in the application of Magnéli phases are mostly hindered by synthetic and processing challenges, especially when metastable and nanostructured materials such as V 6 O 11 are involved. This study gives insight into the complications of SPS-assisted synthesis of complex oxide materials, provides new information about the thermal and electrical properties of vanadium oxides at high temperatures, and supports the concept of reducing the thermal conductivity of materials with structural building blocks such as crystallographic shear (CS) planes.

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