Literature DB >> 26246328

Fluoride solid electrolytes: investigation of the tysonite-type solid solutions La1-xBaxF3-x (x < 0.15).

Johann Chable1, Belto Dieudonné, Monique Body, Christophe Legein, Marie-Pierre Crosnier-Lopez, Cyrille Galven, Fabrice Mauvy, Etienne Durand, Sébastien Fourcade, Denis Sheptyakov, Marc Leblanc, Vincent Maisonneuve, Alain Demourgues.   

Abstract

Pure tysonite La1-xBaxF3-x solid solutions for x < 0.15 were prepared by solid state synthesis in a platinum tube under an azote atmosphere with subsequent quenching for 0.07 ≤x < 0.15. The solid solutions were studied by X-ray, electron and neutron diffractions and by (19)F NMR and impedance spectroscopy. The evolution of the cell parameters obeying Vegard's rule was determined for 0 < x≤ 0.15 and atomic position parameters were accurately refined for x = 0.03, 0.07 and 0.10. The chemical pressure induced by large Ba(2+) cations leads to an increase of the unit cell parameters. Fluorine environment and mobilities are discussed on the basis of the results of neutron diffraction and (19)F solid state NMR. The F1 subnetwork is lacunar; fluorine exchange occurs according to the order: F1-F1 and F1-F2,3. 2D EXSY NMR spectra of La0.97Ba0.03F2.97 reveal, for the first time, a chemical exchange between F2 and F3 sites that requires two successive jumps. The ionic conductivity was evaluated from sintered pellets and different shaping methods were compared. The only structural features which could explain the conductivity maximum are a crossover together with a smaller dispersion of F1-F1,2,3 distances at x = 0.05-0.07.

Entities:  

Year:  2015        PMID: 26246328     DOI: 10.1039/c5dt02321a

Source DB:  PubMed          Journal:  Dalton Trans        ISSN: 1477-9226            Impact factor:   4.390


  1 in total

1.  Topotactic fluorination of intermetallics as an efficient route towards quantum materials.

Authors:  Jean-Baptiste Vaney; Baptiste Vignolle; Alain Demourgues; Etienne Gaudin; Etienne Durand; Christine Labrugère; Fabio Bernardini; Andrés Cano; Sophie Tencé
Journal:  Nat Commun       Date:  2022-03-18       Impact factor: 14.919

  1 in total

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