4.6 Article

Local Structure and Conductivity in the BIGAVOX System

Journal

JOURNAL OF PHYSICAL CHEMISTRY C
Volume 126, Issue 4, Pages 2108-2120

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/acs.jpcc.1c08825

Keywords

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Funding

  1. Queen Mary University of London
  2. China Scholarship Council [201706370217]
  3. National Science Centre, Poland [UMO-2018/30/M/ST3/00743]

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In this study, both long-range and local structures in the Bi2V1-xGaxO5.5-x-delta (BIGAVOX) system were investigated. It was found that the distance between bismuthate and vanadate layers increased with the introduction of more Ga, indicating enhanced ionic interaction between these layers. Different structural forms of Ga and V were also identified. Additionally, reversible phase transitions were observed in different compositions upon heating, and certain compositions showed high conductivity.
While BIMEVOX systems have attracted attention for their fast oxide-ion conductivity at intermediate temperatures, there are only a limited number of reports concerning their local structure. In this work, both long-range and local structures in the Bi2V1-xGaxO5.5-x-delta (BIGAVOX, 0.025 <= x <= 0.40) system are investigated using X- ray powder diffraction (XRD) and a combination of X-ray total scattering, V-51 and Ga-71 solid-state nuclear magnetic resonance (NMR), and Raman spectroscopy, supported by electrical measurements using a.c. impedance spectroscopy. The three main BIMEVOX polymorphs, alpha, beta, and gamma, are observed at room temperature over the compositional ranges 0.025 <= x < 0.10, 0.10 <= x < 0.20, and 0.20 <= x < 0.40, respectively. Above x = 0.10, as more Ga is introduced into the lattice, a general growth of the distance between bismuthate and vanadate layers is observed, indicating increasing ionicity in the interaction between these layers. Ga is found to adopt octahedral and tetrahedral geometries, while V polyhedra include tetrahedral, pentacoordinate, and octahedral geometries. With increasing x-value, as the vacancy concentration increases, more octahedral V polyhedra transform to lower coordinate geometries, resulting in a decrease in the average V-O bond length. Reversible alpha <-> beta and beta <-> alpha phase transitions are observed on heating the x = 0.05 composition, while the beta <-> gamma and gamma '<-> gamma phase transitions are observed on heating the x = 0.15 and 0.20 compositions, respectively. The gamma-BIGAVOX compositions (x = 0.20 and 0.25) generally show a high conductivity of similar to 10(-2) S cm(-1) at 600 degrees C.

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