Thermal diffusivity and conductivity of La 0.7Ca 0.3-xSr xMnO 3 (x= 0 to 0.10)
We report the room temperature thermal conductivity ? and thermal diffusivity ? of polycrystalline La 0.7Ca 0.3-xSr xMnO 3 for x = 0 to 0.1. The samples were prepared by heating at 1220 and 1320�C. The insulator-metal transition temperature, T IM and thermal diffusivity increased with Sr content. Ph...
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my.uniten.dspace-302842023-12-29T15:46:17Z Thermal diffusivity and conductivity of La 0.7Ca 0.3-xSr xMnO 3 (x= 0 to 0.10) Alwi H.A. Ewe L.S. Ibrahim Z. Ibrahim N.B. Abd-Shukor R. 6507541141 58032789200 24780713100 7102687930 7004750914 Manganites Microstructure Thermal diffusivity Electric conductivity Manganese oxide Manganites Microstructure Technology Thermal diffusivity Electrical conductivity Electronic contributions Grain size Insulator-metal transition temperature Polycrystalline Room temperature Thermal conductivity We report the room temperature thermal conductivity ? and thermal diffusivity ? of polycrystalline La 0.7Ca 0.3-xSr xMnO 3 for x = 0 to 0.1. The samples were prepared by heating at 1220 and 1320�C. The insulator-metal transition temperature, T IM and thermal diffusivity increased with Sr content. Phonon was the dominant contributor to thermal conductivity and the electronic contribution was less than 1%. Enhancement of electrical conductivity ? and thermal diffusivity for x ? 0.08 was observed in both series of samples. The grain size of the samples (28 to 46 ?m) does not show any affect on the thermal and electrical properties. � (2012) Trans Tech Publications. Final 2023-12-29T07:46:17Z 2023-12-29T07:46:17Z 2012 Conference paper 10.4028/www.scientific.net/AMR.501.319 2-s2.0-84860752171 https://www.scopus.com/inward/record.uri?eid=2-s2.0-84860752171&doi=10.4028%2fwww.scientific.net%2fAMR.501.319&partnerID=40&md5=a5f15ee20e5d8e8df371cbc3a79b572b https://irepository.uniten.edu.my/handle/123456789/30284 501 319 323 Scopus |
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Manganites Microstructure Thermal diffusivity Electric conductivity Manganese oxide Manganites Microstructure Technology Thermal diffusivity Electrical conductivity Electronic contributions Grain size Insulator-metal transition temperature Polycrystalline Room temperature Thermal conductivity |
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Manganites Microstructure Thermal diffusivity Electric conductivity Manganese oxide Manganites Microstructure Technology Thermal diffusivity Electrical conductivity Electronic contributions Grain size Insulator-metal transition temperature Polycrystalline Room temperature Thermal conductivity Alwi H.A. Ewe L.S. Ibrahim Z. Ibrahim N.B. Abd-Shukor R. Thermal diffusivity and conductivity of La 0.7Ca 0.3-xSr xMnO 3 (x= 0 to 0.10) |
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We report the room temperature thermal conductivity ? and thermal diffusivity ? of polycrystalline La 0.7Ca 0.3-xSr xMnO 3 for x = 0 to 0.1. The samples were prepared by heating at 1220 and 1320�C. The insulator-metal transition temperature, T IM and thermal diffusivity increased with Sr content. Phonon was the dominant contributor to thermal conductivity and the electronic contribution was less than 1%. Enhancement of electrical conductivity ? and thermal diffusivity for x ? 0.08 was observed in both series of samples. The grain size of the samples (28 to 46 ?m) does not show any affect on the thermal and electrical properties. � (2012) Trans Tech Publications. |
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6507541141 |
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6507541141 Alwi H.A. Ewe L.S. Ibrahim Z. Ibrahim N.B. Abd-Shukor R. |
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Conference paper |
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Alwi H.A. Ewe L.S. Ibrahim Z. Ibrahim N.B. Abd-Shukor R. |
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Alwi H.A. |
title |
Thermal diffusivity and conductivity of La 0.7Ca 0.3-xSr xMnO 3 (x= 0 to 0.10) |
title_short |
Thermal diffusivity and conductivity of La 0.7Ca 0.3-xSr xMnO 3 (x= 0 to 0.10) |
title_full |
Thermal diffusivity and conductivity of La 0.7Ca 0.3-xSr xMnO 3 (x= 0 to 0.10) |
title_fullStr |
Thermal diffusivity and conductivity of La 0.7Ca 0.3-xSr xMnO 3 (x= 0 to 0.10) |
title_full_unstemmed |
Thermal diffusivity and conductivity of La 0.7Ca 0.3-xSr xMnO 3 (x= 0 to 0.10) |
title_sort |
thermal diffusivity and conductivity of la 0.7ca 0.3-xsr xmno 3 (x= 0 to 0.10) |
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2023 |
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1806426400851230720 |
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13.214268 |