Search Results - "Bohnke, O."

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  1. 1

    The fast lithium-ion conducting oxides Li3xLa2/3−xTiO3 from fundamentals to application by BOHNKE, O

    Published in Solid state ionics (31-03-2008)
    “…The development of fast lithium conductors is attracting much attention because of their potential applications in electrochemical devices such as high-energy…”
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    Journal Article
  2. 2

    Metallic Nanoparticles and Proton Conductivity: Improving Proton Conductivity of BaCe0.9Y0.1O3−δ Using a Catalytic Approach by Caldes, M. T, Kravchyk, K. V, Benamira, M, Besnard, N, Gunes, V, Bohnke, O, Joubert, O

    Published in Chemistry of materials (21-12-2012)
    “…In this work, we have used nickel nanoparticles to improve proton conductivity of the electrolyte BaCe0.9Y0.1O3−δ (BCY). Ni nanoparticles were dissolved into…”
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    Journal Article
  3. 3

    Conductivity measurements on nasicon and nasicon-modified materials by Bohnke, O, Ronchetti, S, Mazza, D

    Published in Solid state ionics (01-07-1999)
    “…Conductivity measurements have been performed on the solid solution series, Na 3Zr 2− x/4 Si 2− x P 1+ x O 12, for 0< x<2. These materials are Zr-deficient…”
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    Journal Article
  4. 4

    Determination of the non-Arrhenius behaviour of the bulk conductivity of fast ionic conductors LLTO at high temperature by Šalkus, T., Kazakevičius, E., Kežionis, A., Orliukas, A.F., Badot, J.C., Bohnke, O.

    Published in Solid state ionics (22-04-2011)
    “…Li 3 x La 2/3 − x TiO 3 (where x = 0.08, 0.1, and 0.12) lithium ionic conductors were investigated by impedance spectroscopy in broad frequency and temperature…”
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    Journal Article
  5. 5

    Ionic and electronic conductivity of 3 mol% Fe2O3-substituted cubic Y-stabilized ZrO2 by Kravchyk, K V, Bohnke, O, Gunes, V, Belous, A G, Pashkova, E V, Le Lannic, J, Gouttefangeas, F

    Published in Solid state ionics (15-10-2012)
    “…The effect of the addition of a small amount of iron oxide (3 mol%) in Y-stabilized ZrO2 has been investigated. The aging of the obtained compound has been…”
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    Journal Article
  6. 6

    Mechanism of ionic conduction and electrochemical intercalation of lithium into the perovskite lanthanum lithium titanate by Bohnke, O., Bohnke, C., Fourquet, J.L.

    Published in Solid state ionics (01-10-1996)
    “…The ionic conductivity and electrochemical intercalation properties of La 2 3−x Li 3 x TiO 3 solid solutions (for 0.07 ≤ x ≤0.13) have been studied. These…”
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    Journal Article
  7. 7

    Influence of the Chemical Composition on Structural Properties and Electrical Conductivity of Y−Ce−ZrO2 by Belous, A. G, Kravchyk, K. V, Pashkova, E. V, Bohnke, O, Galven, C

    Published in Chemistry of materials (16-10-2007)
    “…The influence of the chemical composition on structural properties and electrical conductivity of solid solutions based on the system Y−Ce−ZrO2 obtained by the…”
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    Journal Article
  8. 8

    Chalcogenide Glasses Based on Germanium Disulfide for Second Harmonic Generation by Guignard, M., Nazabal, V., Smektala, F., Adam, J.-L., Bohnke, O., Duverger, C., Moréac, A., Zeghlache, H., Kudlinski, A., Martinelli, G., Quiquempois, Y.

    Published in Advanced functional materials (05-11-2007)
    “…High second‐order susceptibilities are created by thermal poling in bulk germanium disulfide based chalcogenide glasses. Experimental conditions of the poling…”
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    Journal Article
  9. 9

    Ionic conductivity of Li1.3Al0.3−xScxTi1.7(PO4)3 (x=0, 0.1, 0.15, 0.2, 0.3) solid electrolytes prepared by Pechini process by Šalkus, T., Barre, M., Kežionis, A., Kazakevičius, E., Bohnke, O., Selskienė, A., Orliukas, A.F.

    Published in Solid state ionics (04-10-2012)
    “…Li1.3Al0.3−xScxTi1.7(PO4)3 (where x=0, 0.1, 0.15, 0.2, 0.3) lithium ionic conductors were prepared by Pechini process. Single NASICON-type phase was detected…”
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    Journal Article
  10. 10

    Synthesis of thin-film electrodes based on LiPON and LiPON-LLTO-LiPON by Belous, A. G., V’yunov, O. I., Kovalenko, L. L., Bohnke, O., Bohnke, C.

    Published in Russian journal of electrochemistry (01-06-2014)
    “…Thin lithium-conducting amorphous films of lithium phosphorus oxynitride (LiPON) are synthesized by high-frequency (HF) magnetron sputtering. The effect of…”
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    Journal Article
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    Ionic and electronic conductivities of yttria- and scandia-stabilized zirconia by Belous, A. G., V’yunov, O. I., Gunes, V., Bohnke, O.

    Published in Inorganic materials (01-12-2014)
    “…We report a study and comparative analysis of the medium-temperature (850–1000°C) ionic and total conductivities of zirconia stabilized by yttriaand…”
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    Journal Article
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    Lithium-7 NMR and ionic conductivity studies of lanthanum lithium titanate electrolytes by Emery, J, Buzare, J.Y, Bohnke, O, Fourquet, J.L

    Published in Solid state ionics (01-08-1997)
    “…Lanthanum lithium titanate compounds belonging to the solid solution (La 2/3− x Li 3 x □ 1/3−2 x )TiO 3 have been investigated by powder X-ray diffraction…”
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    NMR Study of Li+ Ion Dynamics in the Perovskite Li3xLa1/3-xNbO3 by EMERY, Joël, BOHNKE, Odile, FLORIAN, Pierre, MARZOUK, Kloul

    Published in The journal of physical chemistry. B (10-11-2005)
    “…7Li and 6Li nuclear magnetic resonance (NMR) experiments are carried out on the perovskite Li3xLa1/3-xNbO3. The results are compared to those obtained on the…”
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    Journal Article
  19. 19

    Structure and Electrical Properties of Li3-xSc2-xZrx(PO4)3 (x = 0, 0.1, 0.2) Ceramics by Orliukas, A. F., Šalkus, T., Kežionis, A., Dindune, A., Kanepe, Z., Ronis, J., Bohnke, O., Venckutė, V., Lelis, M.

    Published in Ferroelectrics (01-01-2011)
    “…At room temperature solid electrolyte Li 3−x Sc 2−x Zr x (PO 4 ) 3 (x = 0, 0.1) compounds belong to monoclinic symmetry (space group P2 1 /n) and the compound…”
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    Journal Article Conference Proceeding
  20. 20

    All oxide solid-state lithium-ion cells by Brousse, T., Fragnaud, P., Marchand, R., Schleich, D.M., Bohnke, O., West, K.

    Published in Journal of power sources (01-10-1997)
    “…Solid-state lithium-ion cells have been prepared using thin film Li 4Ti 5O 12 as the anode, thin film LiCoO 2 as the cathode and Li 0.33La 0.56TiO 3 as the…”
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    Journal Article Conference Proceeding