Stability and range of the type II Bi1−xWxO1.5+1.5x solid solution
We have established the stability and range of the cubic type II phase of Bi1−xWxO1.5+1.5x using a combination of X-ray diffraction, neutron diffraction and X-ray absorption spectroscopy. Type II is a high temperature modification that can be obtained by quenching/rapid cooling of samples with compo...
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Published in | Solid state ionics Vol. 308; pp. 173 - 180 |
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Main Authors | , , , , |
Format | Journal Article |
Language | English |
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Elsevier B.V
01.10.2017
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Abstract | We have established the stability and range of the cubic type II phase of Bi1−xWxO1.5+1.5x using a combination of X-ray diffraction, neutron diffraction and X-ray absorption spectroscopy. Type II is a high temperature modification that can be obtained by quenching/rapid cooling of samples with compositions between x=0.148 to x=0.185. Slower cooling rates yield the stable low temperature polymorph, the tetragonal type Ib phase (Bi rich samples), and mixtures of type Ib and Aurivillius phase (W-rich samples). Throughout the entire solid solution range, type II exhibits a (3+3) dimensional incommensurate modulation with modulation vectors slightly smaller than 1/3 based on a cubic fluorite type subcell (δ-Bi2O3). The main structural motifs are well-defined tetrahedra of WO6 octahedra in a δ-Bi2O3-matrix, with additional W being incorporated on corners and face centers of the approximate commensurate 3×3×3 supercell in octahedral coordination, confirmed by XANES analysis of the W L3-edge. Impedance measurements reveal oxide ionic conductivities comparable to those of yttria-stabilised zirconia even after a decrease in ionic conductivity of about half an order of magnitude on thermal cycling due to transition to the tetragonal type Ib phase.
•Detailed experimental investigation of the range of the type II solid solution•Establishment of phase relations around the type II phase•Analysis of local coordination environments around W6+•Oxide ionic conductivities similar to yttria stabilised zirconia. |
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AbstractList | We have established the stability and range of the cubic type II phase of Bi1−xWxO1.5+1.5x using a combination of X-ray diffraction, neutron diffraction and X-ray absorption spectroscopy. Type II is a high temperature modification that can be obtained by quenching/rapid cooling of samples with compositions between x=0.148 to x=0.185. Slower cooling rates yield the stable low temperature polymorph, the tetragonal type Ib phase (Bi rich samples), and mixtures of type Ib and Aurivillius phase (W-rich samples). Throughout the entire solid solution range, type II exhibits a (3+3) dimensional incommensurate modulation with modulation vectors slightly smaller than 1/3 based on a cubic fluorite type subcell (δ-Bi2O3). The main structural motifs are well-defined tetrahedra of WO6 octahedra in a δ-Bi2O3-matrix, with additional W being incorporated on corners and face centers of the approximate commensurate 3×3×3 supercell in octahedral coordination, confirmed by XANES analysis of the W L3-edge. Impedance measurements reveal oxide ionic conductivities comparable to those of yttria-stabilised zirconia even after a decrease in ionic conductivity of about half an order of magnitude on thermal cycling due to transition to the tetragonal type Ib phase.
•Detailed experimental investigation of the range of the type II solid solution•Establishment of phase relations around the type II phase•Analysis of local coordination environments around W6+•Oxide ionic conductivities similar to yttria stabilised zirconia. |
Author | Wind, Julia Zhang, Zhaoming Kayser, Paula Radosavljevic Evans, Ivana Ling, Chris D. |
Author_xml | – sequence: 1 givenname: Julia surname: Wind fullname: Wind, Julia email: jwin1641@uni.sydney.edu.au organization: School of Chemistry, The University of Sydney, Sydney 2006, Australia – sequence: 2 givenname: Paula orcidid: 0000-0003-1779-1454 surname: Kayser fullname: Kayser, Paula organization: School of Chemistry, The University of Sydney, Sydney 2006, Australia – sequence: 3 givenname: Zhaoming surname: Zhang fullname: Zhang, Zhaoming organization: Australian Nuclear Science and Technology Organisation, New Illawarra Road, Lucas Heights 2234, Australia – sequence: 4 givenname: Ivana surname: Radosavljevic Evans fullname: Radosavljevic Evans, Ivana organization: Department of Chemistry, Durham University, South Road, Durham DH1 3LE, UK – sequence: 5 givenname: Chris D. surname: Ling fullname: Ling, Chris D. organization: School of Chemistry, The University of Sydney, Sydney 2006, Australia |
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Keywords | Incommensurately modulated structures Solid solution Bismuth oxide Neutron diffraction XANES Oxide ionic conductors |
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Snippet | We have established the stability and range of the cubic type II phase of Bi1−xWxO1.5+1.5x using a combination of X-ray diffraction, neutron diffraction and... |
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SubjectTerms | Bismuth oxide Incommensurately modulated structures Neutron diffraction Oxide ionic conductors Solid solution XANES |
Title | Stability and range of the type II Bi1−xWxO1.5+1.5x solid solution |
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