Anisotropy of the thermoelectric figure of merit (ZT) in textured Ca3Co4O9 ceramics prepared by using a spark plasma sintering process

Textured Ca 3 Co 4 O 9 ceramics were prepared by spark plasma sintering (SPS) from commercial CaCO 3 and Co 3 O 4 powders to investigate the thermoelectric anisotropy of Ca 3 Co 4 O 9 . The degree of orientation of the textured specimens was evaluated by using the Lotgering factor method, and the SP...

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Published inJournal of the Korean Physical Society Vol. 66; no. 5; pp. 794 - 799
Main Authors Lim, Chang-Hyun, Seo, Won-Seon, Lee, Soonil, Lim, Young Soo, Kim, Jong-Young, Park, Hyung-Ho, Choi, Soon-Mok, Lee, Kyu Hyoung, Park, Kyeongsoon
Format Journal Article
LanguageEnglish
Published Seoul The Korean Physical Society 01.03.2015
한국물리학회
Subjects
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ISSN0374-4884
1976-8524
DOI10.3938/jkps.66.794

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Abstract Textured Ca 3 Co 4 O 9 ceramics were prepared by spark plasma sintering (SPS) from commercial CaCO 3 and Co 3 O 4 powders to investigate the thermoelectric anisotropy of Ca 3 Co 4 O 9 . The degree of orientation of the textured specimens was evaluated by using the Lotgering factor method, and the SPS process was confirmed to be an effective technology to prepare textured Ca 3 Co 4 O 9 ceramics. Both the power factors and the thermal conductivities were measured in two different directions, parallel (out-of-plane) and perpendicular (in-plane) to the SPS press axis. The difference in anisotropy between the electrical conductivity and the thermal conductivity was investigated for the textured Ca 3 Co 4 O 9 ceramics. The maximum figure of merit ( ZT ) value along the direction perpendicular to the SPS press axis was more than 20% higher than it was along the direction parallel to the SPS press axis. It is noted that the strong thermoelectric anisotropy can give rise to an overestimates of ZT when preparing samples in different directions for power factor and thermal conductivity measurements.
AbstractList Textured Ca3Co4O9 ceramics were prepared by spark plasma sintering (SPS) from commercialCaCO3 and Co3O4 powders to investigate the thermoelectric anisotropy of Ca3Co4O9. The degreeof orientation of the textured specimens was evaluated by using the Lotgering factor method,and the SPS process was confirmed to be an effective technology to prepare textured Ca3Co4O9ceramics. Both the power factors and the thermal conductivities were measured in two differentdirections, parallel (out-of-plane) and perpendicular (in-plane) to the SPS press axis. The differencein anisotropy between the electrical conductivity and the thermal conductivity was investigated forthe textured Ca3Co4O9 ceramics. The maximum figure of merit (ZT) value along the directionperpendicular to the SPS press axis was more than 20% higher than it was along the directionparallel to the SPS press axis. It is noted that the strong thermoelectric anisotropy can give rise toan overestimates of ZT when preparing samples in different directions for power factor and thermalconductivity measurements. KCI Citation Count: 4
Textured Ca 3 Co 4 O 9 ceramics were prepared by spark plasma sintering (SPS) from commercial CaCO 3 and Co 3 O 4 powders to investigate the thermoelectric anisotropy of Ca 3 Co 4 O 9 . The degree of orientation of the textured specimens was evaluated by using the Lotgering factor method, and the SPS process was confirmed to be an effective technology to prepare textured Ca 3 Co 4 O 9 ceramics. Both the power factors and the thermal conductivities were measured in two different directions, parallel (out-of-plane) and perpendicular (in-plane) to the SPS press axis. The difference in anisotropy between the electrical conductivity and the thermal conductivity was investigated for the textured Ca 3 Co 4 O 9 ceramics. The maximum figure of merit ( ZT ) value along the direction perpendicular to the SPS press axis was more than 20% higher than it was along the direction parallel to the SPS press axis. It is noted that the strong thermoelectric anisotropy can give rise to an overestimates of ZT when preparing samples in different directions for power factor and thermal conductivity measurements.
Author Choi, Soon-Mok
Seo, Won-Seon
Lee, Soonil
Lee, Kyu Hyoung
Park, Kyeongsoon
Kim, Jong-Young
Park, Hyung-Ho
Lim, Young Soo
Lim, Chang-Hyun
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  surname: Lim
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  organization: Energy & Environmental Division, Korea Institute of Ceramic Engineering and Technology, Department of Materials Science and Engineering, Yonsei University
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  givenname: Won-Seon
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  fullname: Seo, Won-Seon
  organization: Energy & Environmental Division, Korea Institute of Ceramic Engineering and Technology
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  fullname: Lee, Soonil
  organization: Energy & Environmental Division, Korea Institute of Ceramic Engineering and Technology
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  givenname: Young Soo
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  organization: Department of Materials Science and Engineering, Yonsei University
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  surname: Choi
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  email: smchoi@koreatech.ac.kr
  organization: School of Energy, Materials and Chemical Engineering, Korea University of Technology and Education
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  givenname: Kyu Hyoung
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  fullname: Lee, Kyu Hyoung
  organization: Department of Nano Applied Engineering, Kangwon National University
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  givenname: Kyeongsoon
  surname: Park
  fullname: Park, Kyeongsoon
  organization: Department of Advanced Materials Engineering, Sejong University
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Keywords Lotgering factor
Spark plasma sintering
Thermal property
Thermoelectric anisotropy
Co
Ca
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Snippet Textured Ca 3 Co 4 O 9 ceramics were prepared by spark plasma sintering (SPS) from commercial CaCO 3 and Co 3 O 4 powders to investigate the thermoelectric...
Textured Ca3Co4O9 ceramics were prepared by spark plasma sintering (SPS) from commercialCaCO3 and Co3O4 powders to investigate the thermoelectric anisotropy of...
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SubjectTerms Mathematical and Computational Physics
Particle and Nuclear Physics
Physics
Physics and Astronomy
Theoretical
물리학
Title Anisotropy of the thermoelectric figure of merit (ZT) in textured Ca3Co4O9 ceramics prepared by using a spark plasma sintering process
URI https://link.springer.com/article/10.3938/jkps.66.794
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Volume 66
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