IMN

Biblio. IMN

Liste de références

Affichage de 1 - 6 de 6 (Bibliographie: Bibliographie WIKINDX globale)
Paramètres :
Collection:  Energy Environ. Sci.
Ordonner par

Croissant
Décroissant
Utiliser tout ce qui est coché 
Utiliser tout ce qui est affiché 
Utiliser tous les items 
Ben Yahia, M., Lemoigno, F., Rousse, G., Boucher, F., Tarascon, J.-M. & Doublet, M.-L. (2012) Origin of the 3.6 V to 3.9 V voltage increase in the LiFeSO4F cathodes for Li-ion batteries. Energy Environ. Sci. 5 9584–9594.   
Added by: Laurent Cournède 2016-03-10 21:28:38 Pop. 0.75%
Gauthier, M., Mazouzi, D., Reyter, D., Lestriez, B., Moreau, P., Guyomard, D. & Roue, L. (2013) A low-cost and high performance ball-milled Si-based negative electrode for high-energy Li-ion batteries. Energy Environ. Sci. 6 2145–2155.   
Added by: Laurent Cournède 2016-03-10 21:23:30 Pop. 0.75%
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.   
Added by: Laurent Cournède 2016-03-10 21:28:40 Pop. 0.75%
Naoi, K., Kisu, K., Iwama, E., Nakashima, S., Sakai, Y., Orikasa, Y., Leone, P., Dupre, N., Brousse, T., Rozier, P., Naoi, W. & Simon, P. (2016) Ultrafast charge-discharge characteristics of a nanosized core-shell structured LiFePO4 material for hybrid supercapacitor applications. Energy Environ. Sci. 9 2143–2151.   
Last edited by: Richard Baschera 2016-07-11 09:26:57 Pop. 0.75%
Renault, S., Gottis, S., Barres, A.-L., Courty, M., Chauvet, O., Dolhem, F. & Poizot, P. (2013) A green Li-organic battery working as a fuel cell in case of emergency. Energy Environ. Sci. 6 2124–2133.   
Added by: Laurent Cournède 2016-03-10 21:23:30 Pop. 0.5%
Robert, K., Stievenard, D., Deresmes, D., Douard, C., Iadecola, A., Troadec, D., Simon, P., Nuns, N., Marinova, M., Huve, M., Roussel, P., Brousse, T. & Lethien, C. (2020) Novel insights into the charge storage mechanism in pseudocapacitive vanadium nitride thick films for high-performance on-chip micro-supercapacitors. Energy Environ. Sci. 13 949–957.   
Last edited by: Richard Baschera 2020-04-24 07:41:18 Pop. 1%
wikindx 4.2.2 ©2014 | Références totales : 2721 | Requêtes métadonnées : 53 | Exécution de script : 0.09507 secs | Style : Harvard | Bibliographie : Bibliographie WIKINDX globale