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Please use this identifier to cite or link to this item: https://shodhratna.thapar.edu:8443/jspui/handle/tiet/498
Title: Effect of Cr3+ substitution for V5+ in bismuth vanadate solid electrolyte
Authors: Kant, R.
Singh, K.
Pandey, O. P.
Keywords: Bismuth vanadate
Ionic conductivity
Phase transition
X-ray diffraction
Issue Date: 2008
Abstract: Solid electrolyte materials based on bismuth vanadate (Bi<inf>4</inf>V<inf>2</inf>O<inf>11</inf>) exhibit 50–100 times more ionic conductivity than any other solid electrolyte materials which are in use in solid oxide fuel cell. Partially substituted trivalent Cr-doped Bi<inf>4</inf>V<inf>2-x</inf>Me<inf>x</inf>O<inf>11-5</inf> (Me = CrIII) has been prepared by solid state reaction technique. Three phases (α, β, γ) are observed in the unsubstituted compound. Alpha (α) is the low conducting room temperature phase and gamma (γ) is the high conducting phase observed at higher temperature. Stabilization of α, β and γ phases at room temperature depends on the Bi:V ratio and the nature of the dopant. These phases have been characterized by X-ray diffraction analysis. All the substituted phases (0≤x≤0.4) retain the low conducting α-phase. AC conductivity measurement of all the samples in the temperature range of 200°-700°C has been done. The change of slopes observed in the Arrhenius plots is in agreement with the phase transitions for all the studied compositions. © 2008 Taylor and Francis Group, LLC. © 2017 Elsevier B.V., All rights reserved.
URI: https://shodhratna.thapar.edu:8443/jspui/handle/tiet/498
ISSN: 21655456
Appears in Collections:PH Journal Articles

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