Preparation and Characterization of New Oxide Ion Conductors in Bi2O3-As2O5 System

Materials in xBi2O3-As2O5 binary system: 1 < x < 7, were prepared by solid state reaction. XRD shows that single phase materials were formed when x = 5, 5.5, 5.667, 5.75, 6 and 7. The symmetry and space group of the materials were determined. Compositions with 5 < x < 6.25 are solid solu...

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Main Authors: Lee, S. L., Lee, C. K., Sinclair, D. C., Chong, F. K., Halim, S. A., Yap, T.
Format: Article
Language:English
Published: Institut Kimia Malaysia 2005
Subjects:
Online Access:http://eprints.utm.my/6329/1/paper_Lee_malaysian_journal2005.pdf
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author Lee, S. L.
Lee, C. K.
Sinclair, D. C.
Chong, F. K.
Halim, S. A.
Yap, T.
author_facet Lee, S. L.
Lee, C. K.
Sinclair, D. C.
Chong, F. K.
Halim, S. A.
Yap, T.
author_sort Lee, S. L.
collection ePrints
description Materials in xBi2O3-As2O5 binary system: 1 < x < 7, were prepared by solid state reaction. XRD shows that single phase materials were formed when x = 5, 5.5, 5.667, 5.75, 6 and 7. The symmetry and space group of the materials were determined. Compositions with 5 < x < 6.25 are solid solutions. Electrical properties of the single phase materials were studied using ac impedance spectroscopy at a frequency range of 10 Hz to 13 MHz. These materials are thermally stable and appear to be oxide ion conductors. Highest conductivity was obtained in Bi23As4O44.5 with s value of 5.66 x 10-5 ohm-1 cm-1, Ea = 0.72 eV at 300oC.
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spelling utm.eprints-63292010-10-26T04:31:02Z http://eprints.utm.my/6329/ Preparation and Characterization of New Oxide Ion Conductors in Bi2O3-As2O5 System Lee, S. L. Lee, C. K. Sinclair, D. C. Chong, F. K. Halim, S. A. Yap, T. QD Chemistry Materials in xBi2O3-As2O5 binary system: 1 < x < 7, were prepared by solid state reaction. XRD shows that single phase materials were formed when x = 5, 5.5, 5.667, 5.75, 6 and 7. The symmetry and space group of the materials were determined. Compositions with 5 < x < 6.25 are solid solutions. Electrical properties of the single phase materials were studied using ac impedance spectroscopy at a frequency range of 10 Hz to 13 MHz. These materials are thermally stable and appear to be oxide ion conductors. Highest conductivity was obtained in Bi23As4O44.5 with s value of 5.66 x 10-5 ohm-1 cm-1, Ea = 0.72 eV at 300oC. Institut Kimia Malaysia 2005 Article PeerReviewed application/pdf en http://eprints.utm.my/6329/1/paper_Lee_malaysian_journal2005.pdf Lee, S. L. and Lee, C. K. and Sinclair, D. C. and Chong, F. K. and Halim, S. A. and Yap, T. (2005) Preparation and Characterization of New Oxide Ion Conductors in Bi2O3-As2O5 System. Malaysian Journal of Chemistry, 7 (1). pp. 1-10. http://www.ikm.org.my/downloads/JournalPDFs/MJC7_001_010_LeeChnoongKheng.pdf
spellingShingle QD Chemistry
Lee, S. L.
Lee, C. K.
Sinclair, D. C.
Chong, F. K.
Halim, S. A.
Yap, T.
Preparation and Characterization of New Oxide Ion Conductors in Bi2O3-As2O5 System
title Preparation and Characterization of New Oxide Ion Conductors in Bi2O3-As2O5 System
title_full Preparation and Characterization of New Oxide Ion Conductors in Bi2O3-As2O5 System
title_fullStr Preparation and Characterization of New Oxide Ion Conductors in Bi2O3-As2O5 System
title_full_unstemmed Preparation and Characterization of New Oxide Ion Conductors in Bi2O3-As2O5 System
title_short Preparation and Characterization of New Oxide Ion Conductors in Bi2O3-As2O5 System
title_sort preparation and characterization of new oxide ion conductors in bi2o3 as2o5 system
topic QD Chemistry
url http://eprints.utm.my/6329/1/paper_Lee_malaysian_journal2005.pdf
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