Subsolidus formation and impedance spectroscopy studies of materials in the (Bi2O3)1−x (Y2O3)x binary system.

Single phase (Bi2O3)1−x(Y2O3)x samples with x = 0.15, 0.20, 0.30 and 0.40 were successfully synthesised via conventional solid state method at the firing temperature of 800 °C over 24 h. These samples crystallised in cubic fluorite structure, space group, Fm-3m and lattice parameters, a ranging from...

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Main Authors: Tan, M.Y., Tan, Kar Ban, Zainal, Zulkarnain, Khaw, Chwin Chieh, Chen, Soo Kien
Format: Article
Language:English
English
Published: Elsevier 2012
Online Access:http://psasir.upm.edu.my/id/eprint/25304/
http://psasir.upm.edu.my/id/eprint/25304/1/Subsolidus%20formation%20and%20impedance%20spectroscopy%20studies%20of%20materials%20in%20the.pdf
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author Tan, M.Y.
Tan, Kar Ban
Zainal, Zulkarnain
Khaw, Chwin Chieh
Chen, Soo Kien
author_facet Tan, M.Y.
Tan, Kar Ban
Zainal, Zulkarnain
Khaw, Chwin Chieh
Chen, Soo Kien
author_sort Tan, M.Y.
building UPM Institutional Repository
collection Online Access
description Single phase (Bi2O3)1−x(Y2O3)x samples with x = 0.15, 0.20, 0.30 and 0.40 were successfully synthesised via conventional solid state method at the firing temperature of 800 °C over 24 h. These samples crystallised in cubic fluorite structure, space group, Fm-3m and lattice parameters, a ranging from 5.5167 Å to 5.4369 Å with an increase of doped Y2O3. The linear-plot obeyed Vegard's law, revealing a well-behaved substitutional solid solution existed within the incorporated dopant concentration range. (Bi2O3)1−x(Y2O3)x subsolidus system was thermally stable as no phase transition or weight loss was discernable within the studied temperature. The electrical properties of the prepared samples were characterised by AC impedance analyser, HP4192 at temperature ranging from 25 °C to 850 °C in the frequency range of 5 Hz to 13 MHz. The impedance data could be represented by different RC equivalent circuits. The conduction mechanism involved two processes with different activation energies at low and high temperature regions, e.g. 1.09–1.12 eV and 0.41–0.44 eV, respectively. The ionic conductivities of the prepared samples were found decreased with increase of yttrium content. These values were in general higher than that of commercial yttria- stabilised zirconia (YSZ) solid electrolyte over wide range of temperatures.
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spelling upm-253042016-01-12T01:33:49Z http://psasir.upm.edu.my/id/eprint/25304/ Subsolidus formation and impedance spectroscopy studies of materials in the (Bi2O3)1−x (Y2O3)x binary system. Tan, M.Y. Tan, Kar Ban Zainal, Zulkarnain Khaw, Chwin Chieh Chen, Soo Kien Single phase (Bi2O3)1−x(Y2O3)x samples with x = 0.15, 0.20, 0.30 and 0.40 were successfully synthesised via conventional solid state method at the firing temperature of 800 °C over 24 h. These samples crystallised in cubic fluorite structure, space group, Fm-3m and lattice parameters, a ranging from 5.5167 Å to 5.4369 Å with an increase of doped Y2O3. The linear-plot obeyed Vegard's law, revealing a well-behaved substitutional solid solution existed within the incorporated dopant concentration range. (Bi2O3)1−x(Y2O3)x subsolidus system was thermally stable as no phase transition or weight loss was discernable within the studied temperature. The electrical properties of the prepared samples were characterised by AC impedance analyser, HP4192 at temperature ranging from 25 °C to 850 °C in the frequency range of 5 Hz to 13 MHz. The impedance data could be represented by different RC equivalent circuits. The conduction mechanism involved two processes with different activation energies at low and high temperature regions, e.g. 1.09–1.12 eV and 0.41–0.44 eV, respectively. The ionic conductivities of the prepared samples were found decreased with increase of yttrium content. These values were in general higher than that of commercial yttria- stabilised zirconia (YSZ) solid electrolyte over wide range of temperatures. Elsevier 2012-05 Article PeerReviewed application/pdf en http://psasir.upm.edu.my/id/eprint/25304/1/Subsolidus%20formation%20and%20impedance%20spectroscopy%20studies%20of%20materials%20in%20the.pdf Tan, M.Y. and Tan, Kar Ban and Zainal, Zulkarnain and Khaw, Chwin Chieh and Chen, Soo Kien (2012) Subsolidus formation and impedance spectroscopy studies of materials in the (Bi2O3)1−x (Y2O3)x binary system. Ceramics International, 38 (4). pp. 3403-3409. ISSN 0272-8842 10.1016/j.ceramint.2011.12.052 English
spellingShingle Tan, M.Y.
Tan, Kar Ban
Zainal, Zulkarnain
Khaw, Chwin Chieh
Chen, Soo Kien
Subsolidus formation and impedance spectroscopy studies of materials in the (Bi2O3)1−x (Y2O3)x binary system.
title Subsolidus formation and impedance spectroscopy studies of materials in the (Bi2O3)1−x (Y2O3)x binary system.
title_full Subsolidus formation and impedance spectroscopy studies of materials in the (Bi2O3)1−x (Y2O3)x binary system.
title_fullStr Subsolidus formation and impedance spectroscopy studies of materials in the (Bi2O3)1−x (Y2O3)x binary system.
title_full_unstemmed Subsolidus formation and impedance spectroscopy studies of materials in the (Bi2O3)1−x (Y2O3)x binary system.
title_short Subsolidus formation and impedance spectroscopy studies of materials in the (Bi2O3)1−x (Y2O3)x binary system.
title_sort subsolidus formation and impedance spectroscopy studies of materials in the (bi2o3)1−x (y2o3)x binary system.
url http://psasir.upm.edu.my/id/eprint/25304/
http://psasir.upm.edu.my/id/eprint/25304/
http://psasir.upm.edu.my/id/eprint/25304/1/Subsolidus%20formation%20and%20impedance%20spectroscopy%20studies%20of%20materials%20in%20the.pdf