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Arrive, C., Delahaye, T., Joubert, O. & Gauthier, G. H. (2020) Study of (La,Sr)(Ti,Ni)O(3-delta )materials for symmetrical Solid Oxide Cell electrode - Part B: Conditions of Ni exsolution. Ceram. Int. 46 5841–5849. |
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Cuisinier, M., Martin, J.-F., Dupre, N., Kanno, R. & Guyomard, D. (2011) Elucidating the LiFePO4 air aging mechanism to predict its electrochemical performance. J. Mater. Chem. 21 18575–18583. |
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Cuisinier, M., Martin, J.-F., Dupre, N., Yamada, A., Kanno, R. & Guyomard, D. (2010) Moisture driven aging mechanism of LiFePO4 subjected to air exposure. Electrochem. Commun. 12 238–241. |
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Delannoy, P. .-E., Riou, B., Brousse, T., Le Bideau, J., Guyomard, D. & Lestriez, B. (2015) Ink-jet printed porous composite LiFePO4 electrode from aqueous suspension for microbatteries. J. Power Sources, 287 261–268. |
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Gedikoglu, N., Ostolaza-Paraiso, J., Grange, E., Paris, M., Grolleau, S., Fairen-Jimenez, D. & Devic, T. (2024) Isoreticularity in a gallate-based metal–organic framework: Impact of the extension of the ligand on the porosity, stability and adsorption of CO2. Microporous and Mesoporous Materials, 367 112968. |
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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. |
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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. |
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Lee, J., Zhang, Q., Kim, J., Dupre, N., Avdeev, M., Jeong, M., Yoon, W.-S., Gu, L. & Kang, B. (2020) Controlled Atomic Solubility in Mn-Rich Composite Material to Achieve Superior Electrochemical Performance for Li-Ion Batteries. Adv. Energy Mater. 10 1902231. |
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Letilly, M., Joubert, O. & La Salle, L. G. A. (2012) Characteristics and performance improvement of anode supported solid oxide fuel cells based on BaIn(0.)3Ti(0.7)O(2.85) (BIT07) as electrolyte, BIT07-Ni as anode and La0.58Sr0.4Co0.2Fe0.8O3-delta (LSCF) as cathode. J. Power Sources, 206 210–214. |
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Malka, D., Hanna, O., Hauser, T., Hayne, S., Luski, S., Elias, Y., Attias, R., Brousse, T. & Aurbach, D. (2018) Improving the Capacity of Electrochemical Capacitor Electrode by Grafting 2-Aminoanthraquinone over Kynol Carbon Cloth Using Diazonium Chemistry. J. Electrochem. Soc. 165 A3342–A3349. |
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Noirault, S., Celerier, S., Joubert, O., Caldes, M. T. & Piffard, Y. (2007) Water incorporation into the (Ba(1-x)Lax)(2)In2O5+x square(1-x) (0 <= x < 0.6) system. Solid State Ion. 178 1353–1359. |
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Xu, C., Renault, S., Ebadi, M., Wang, Z., Bjorklund, E., Guyomard, D., Brandell, D., Edstrom, K. & Gustafsson, T. (2017) LiTDI: A Highly Efficient Additive for Electrolyte Stabilization in Lithium-Ion Batteries. Chem. Mat. 29 2254–2263. |
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Last edited by: Richard Baschera 2017-04-11 13:29:44 |
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