IMN

Biblio. IMN

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Arrive, C., Delahaye, T., Joubert, O. & Gauthier, G. (2013) Exsolution of nickel nanoparticles at the surface of a conducting titanate as potential hydrogen electrode material for solid oxide electrochemical cells. J. Power Sources, 223 341–348.   
Added by: Laurent Cournède 2016-03-10 21:23:31 Pop. 1%
Delahaye, T., Jardiel, T., Joubert, O., Laucournet, R., Gauthier, G. & Caldes, M. T. (2011) Electrochemical properties of novel SOFC dual electrode La0.75Sr0.25Cr0.5Mn0.3Ni0.2O3 (-) (delta). Solid State Ion. 184 39–41.   
Added by: Laurent Cournède 2016-03-10 21:32:21 Pop. 1%
Garcia, V., Caldes, M. T., Joubert, O. & Moreno, J. A. (2008) Reformado en seco del metano sobre catalizadores Ni/BaTi1-xInxO3-d. Energética, 13–20.   
Added by: Richard Baschera 2016-09-02 14:13:15 Pop. 1%
Garcia, V., Teresa Caldes, M., Joubert, O., Gautron, E., Mondragon, F. & Moreno, A. (2010) Methane oxidation by lattice oxygen of Ni/BaTi1-xInxO3-delta catalysts. Catal. Today, 157 177–182.   
Added by: Laurent Cournède 2016-03-10 21:37:31 Pop. 1%
Jardiel, T., Caldes, M. T., Moser, F., Hamon, J., Gauthier, G. & Joubert, O. (2010) New SOFC electrode materials: The Ni-substituted LSCM-based compounds La0.75Sr0.25)(Cr0.5Mn0.5-x Ni-x)O-3 (-) (delta) and (La0.75Sr0.25)(Cr0.5- xNixMn0.5)O-3 (- delta). Solid State Ion. 181 894–901.   
Added by: Laurent Cournède 2016-03-10 21:37:32 Pop. 1.75%
Jarry, A., Quarez, E. & Joubert, O. (2014) Tailoring conductivity properties of chemically stable Baln(1-x-y)Ti(x)Zr(y)O(2.5) (+ (x + y)/2-n)(OH)(2n) electrolytes for proton conducting fuel cells. Solid State Ion. 256 76–82.   
Added by: Florent Boucher 2016-04-29 09:26:44 Pop. 1%
Jarry, A., Quarez, E., Kravchyk, K. & Joubert, O. (2012) Rare earth effect on conductivity and stability properties of doped barium indates as potential proton-conducting fuel cell electrolytes. Solid State Ion. 216 11–14.   
Added by: Laurent Cournède 2016-03-10 21:28:39 Pop. 0.75%
Kravchyk, K. V., Quarez, E., Caldes, M., La Salle, L. G. A. & Joubert, O. (2011) Compatibility of La26O27(BO3)(8) electrolyte with standard cathode materials for use in proton conducting solid oxide fuel cells. J. Power Sources, 196 7435–7441.   
Added by: Laurent Cournède 2016-03-10 21:32:20 Pop. 1%
Lannelongue, P., Le Vot, S., Fontaine, O., Brousse, T. & Favier, F. (2019) Electrochemical study of asymmetric aqueous supercapacitors based on high density oxides: C/Ba0.5Sr0.5Co0.8Fe0.2O3-delta and FeWO4/Ba0.5Sr0.5Co0.8Fe0.2O3-delta. Electrochim. Acta, 326 UNSP 134886.   
Last edited by: Richard Baschera 2019-12-20 09:44:06 Pop. 2%
Mauchamp, V., Boucher, F. & Moreau, P. (2008) Electron energy-loss spectroscopy in the low-loss region as a characterization tool of electrode materials. Ionics, 14 191–195.   
Added by: Laurent Cournède 2016-03-10 21:58:41 Pop. 1%
Noirault, S., Celerier, S., Joubert, O., Caldes, M. T. & Piffard, Y. (2007) Incorporation of water and fast proton conduction in the inherently oxygen-dericient compound La26O27 rectangle(BO3)(8). Adv. Mater. 19 867–+.   
Added by: Laurent Cournède 2016-03-10 22:02:30 Pop. 1.75%
Shimizu, Y., Ueda, K., Massuyeau, F. & Jobic, S. (2014) Preparation of thin films of perovskite-type YAlO3:Gd3+-Pr3+ UV phosphors. Thin Solid Films, 571 90–93.   
Added by: Laurent Cournède 2016-03-10 21:01:54 Pop. 0.75%
Thommy, L., Benamira, M., Jardiel, T., Gunes, V., Joubert, O. & Caldes, M. T. (2021) Ru exsolution in substituted La0.75Sr0.25Cr0.5Mn0.5O3-delta compound as anode material for an IT-SOFCs. Mater. Chem. Phys. 268 124724.   
Last edited by: Richard Baschera 2021-06-25 08:24:28 Pop. 1.75%
Thommy, L., Joubert, O., Hamon, J. & Caldes, M.-T. (2016) Impregnation versus exsolution: Using metal catalysts to improve electrocatalytic properties of LSCM-based anodes operating at 600 degrees C. Int. J. Hydrog. Energy, 41 14207–14216.   
Last edited by: Richard Baschera 2016-10-07 09:08:38 Pop. 1%
wikindx 4.2.2 ©2014 | Références totales : 2830 | Requêtes métadonnées : 82 | Exécution de script : 0.10152 secs | Style : Harvard | Bibliographie : Bibliographie WIKINDX globale