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Ajoutée par : Laurent Cournède 2016-03-10 21:41:24 |
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Madec, L., Bouvree, A., Blanchard, P., Cougnon, C., Brousse, T., Lestriez, B., Guyomard, D. & Gaubicher, J. (2012) In situ redox functionalization of composite electrodes for high power-high energy electrochemical storage systems via a non-covalent approach. Energy Environ. Sci. 5 5379–5386. |
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Ajoutée par : Laurent Cournède 2016-03-10 21:28:40 |
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Marino, C., Darwiche, A., Dupre, N., Wilhelm, H. A., Lestriez, B., Martinez, H., Dedryvere, R., Zhang, W., Ghamouss, F., Lemordant, D. & Monconduit, L. (2013) Study of the Electrode/Electrolyte Interface on Cycling of a Conversion Type Electrode Material in Li Batteries. J. Phys. Chem. C, 117 19302–19313. |
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Ajoutée par : Laurent Cournède 2016-03-10 21:23:30 |
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Mazouzi, D., Reyter, D., Gauthier, M., Moreau, P., Guyomard, D., Roue, L. & Lestriez, B. (2014) Very High Surface Capacity Observed Using Si Negative Electrodes Embedded in Copper Foam as 3D Current Collectors. Adv. Energy Mater. 4 1301718. |
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Ajoutée par : Laurent Cournède 2016-03-10 21:01:56 |
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Nguyen, B. P. N., Mariage, N., Fredon, R., Kelder, E. M. & Lestriez, B. (2015) Manufacturing of LiNi0.5Mn1.5O4 Positive Composite Electrodes with Industry-Relevant Surface Capacities for Lithium Ion-Cells. J. Electrochem. Soc. 162 A1451–A1459. |
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Ajoutée par : Laurent Cournède 2016-03-10 18:36:42 |
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Nguyen, B. P. N., Kumar, N. A., Gaubicher, J., Duclairoir, F., Brousse, T., Crosnier, O., Dubois, L., Bidan, G., Guyomard, D. & Lestriez, B. (2013) Nanosilicon-Based Thick Negative Composite Electrodes for Lithium Batteries with Graphene as Conductive Additive. Adv. Energy Mater. 3 1351–1357. |
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Ajoutée par : Laurent Cournède 2016-03-10 21:23:29 |
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Oumellal, Y., Delpuech, N., Mazouzi, D., Dupre, N., Gaubicher, J., Moreau, P., Soudan, P., Lestriez, B. & Guyomard, D. (2011) The failure mechanism of nano-sized Si-based negative electrodes for lithium ion batteries. J. Mater. Chem. 21 6201–6208. |
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Ajoutée par : Laurent Cournède 2016-03-10 21:32:21 |
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Porto, L. R., Frappier, R., Ducros, J. B., Aucher, C., Mosqueda, H., Chenu, S., Chavillon, B., Tessier, F., Chevire, F. & Brousse, T. (2012) Titanium and vanadium oxynitride powders as pseudo-capacitive materials for electrochemical capacitors. Electrochim. Acta, 82 257–262. |
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Dernièrement modifiée par : Richard Baschera 2016-08-30 10:02:55 |
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Quarez, E., Noirault, S., La Salle, A. L. G., Stevens, P. & Joubert, O. (2010) Evaluation of Ba-2(In0.8Ti0.2)(2)O5.2-n(OH)(2n) as a potential electrolyte material for proton-conducting solid oxide fuel cell. J. Power Sources, 195 4923–4927. |
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Ajoutée par : Laurent Cournède 2016-03-10 21:37:32 |
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Ajoutée par : Laurent Cournède 2016-03-10 21:37:33 |
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Reyter, D., Rousselot, S., Mazouzi, D., Gauthier, M., Moreau, P., Lestriez, B., Guyomard, D. & Roue, L. (2013) An electrochemically roughened Cu current collector for Si-based electrode in Li-ion batteries. J. Power Sources, 239 308–314. |
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Ajoutée par : Laurent Cournède 2016-03-10 21:23:30 |
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Ricoul, F., La Salle, L. G. A., Kerihuel, A., Subrenat, A. & Joubert, O. (2014) High temperature fuel cell fueled with syngas produced from biomass gasification for small scale chp units. Papers of the 22nd European Biomass Conference: Setting the Course for a Biobased Economy, 430–435. |
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Dernièrement modifiée par : administrateur 2016-12-14 10:28:24 |
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Seid, K.-A., Badot, J.-C., Perca, C., Dubrunfaut, O., Soudan, P., Guyomard, D. & Lestriez, B. (2015) An In Situ Multiscale Study of Ion and Electron Motion in a Lithium-Ion Battery Composite Electrode. Adv. Energy Mater. 5 1400903. |
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Ajoutée par : Laurent Cournède 2016-03-10 18:36:42 |
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Sivasankaran, V., Marino, C., Chamas, M., Soudan, P., Guyomard, D., Jumas, J. C., Lippens, P. E., Monconduit, L. & Lestriez, B. (2011) Improvement of intermetallics electrochemical behavior by playing with the composite electrode formulation. J. Mater. Chem. 21 5076–5082. |
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Ajoutée par : Laurent Cournède 2016-03-10 21:32:21 |
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Tanguy, F., Gaubicher, J., Soudan, P., Bourgeon-Martin, N., Mauchamp, V. & Guyomard, D. (2007) Propagation of surface-assisted side reactions, a main cause for capacity fading of vanadium oxide nanograins. Electrochem. Solid State Lett. 10 A184–A188. |
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Ajoutée par : Laurent Cournède 2016-03-10 22:02:31 |
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Tanguy, F., Gaubicher, J. & Guyomard, D. (2010) Capacity fading on cycling nano size grains of Li1.1V3O8, electrochemical investigation. Electrochim. Acta, 55 3979–3986. |
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Ajoutée par : Laurent Cournède 2016-03-10 21:37:32 |
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Yassin, A., Jimenez, P., Lestriez, B., Moreau, P., Leriche, P., Roncali, J., Blanchard, P., Terrisse, H., Guyomard, D. & Gaubicher, J. (2015) Engineered Electronic Contacts for Composite Electrodes in Li Batteries Using Thiophene-Based Molecular Junctions. Chem. Mat. 27 4057–4065. |
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Ajoutée par : Laurent Cournède 2016-03-10 18:36:41 |
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