IMN

Biblio. IMN

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Okita, N., Kisu, K., Iwama, E., Sakai, Y., Lim, Y., Takami, Y., Sougrati, M. T., Brousse, T., Rozier, P., Simon, P., Naoi, W. & Naoi, K. (2018) Stabilizing the Structure of LiCoPO4 Nanocrystals via Addition of Fe3+: Formation of Fe3+ Surface Layer, Creation of Diffusion-Enhancing Vacancies, and Enabling High-Voltage Battery Operation. Chemistry of Materials, 30 6675–6683.   
Last edited by: Richard Baschera 2018-12-19 10:41:03 Pop. 0.5%
Ouendi, S., Robert, K., Stievenard, D., Brousse, T., Roussel, P. & Lethien, C. (2019) Sputtered tungsten nitride films as pseudocapacitive electrode for on chip micro-supercapacitors. Energy Storage Materials, 20 243–252.   
Last edited by: Richard Baschera 2019-07-18 08:46:32 Pop. 0.75%
Ouldhamadouche, N., Achour, A., Lucio-Porto, R., Islam, M., Solaymani, S., Arman, A., Ahmadpourian, A., Achour, H., Le Brizoual, L., Djouadi, M. A. & Brousse, T. (2018) Electrodes based on nano-tree-like vanadium nitride and carbon nanotubes for micro-supercapacitors. Journal of Materials Science & Technology, 34 976–982.   
Last edited by: Richard Baschera 2018-07-24 12:52:09 Pop. 0.5%
Quarez, E., Espinosa-Angeles, J. C., Crosnier, O., Joubert, O. & Brousse, T. (2021) Revisiting the five-decade-old structure of the Fe2WO6 powder with incommensurate modulations. Crystengcomm, 095022.   
Last edited by: Richard Baschera 2021-10-14 13:08:55 Pop. 2%
Rebuttini, V., Fazio, E., Santangelo, S., Neri, F., Caputo, G., Martin, C., Brousse, T., Favier, F. & Pinna, N. (2015) Chemical Modification of Graphene Oxide through Diazonium Chemistry and Its Influence on the Structure-Property Relationships of Graphene Oxide-Iron Oxide Nanocomposites. Chem.-Eur. J. 21 12465–12474.   
Added by: Laurent Cournède 2016-03-10 18:36:41 Pop. 0.75%
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. 0.75%
Robert, K., Douard, C., Demortiere, A., Blanchard, F., Roussel, P., Brousse, T. & Lethien, C. (2018) On Chip Interdigitated Micro-Supercapacitors Based on Sputtered Bifunctional Vanadium Nitride Thin Films with Finely Tuned Inter- and Intracolumnar Porosities. Advanced Materials Technologies, 3 1800036.   
Last edited by: Richard Baschera 2021-01-19 15:21:50 Pop. 3.75%
Shafi, M. P., Mohapatra, D., Reddy, P. V., Dhakal, G., Kumar, D. R., Tuma, D., Brousse, T. & Shim, J.-J. (2022) Sr- and Fe-substituted LaMnO3 Perovskite: Fundamental insight and possible use in asymmetric hybrid supercapacitor. Energy Storage Materials, 45 119–129.   
Last edited by: Richard Baschera 2022-04-29 14:53:45 Pop. 8.5%
Thissandier, F., Gentile, P., Brousse, T., Bidan, G. & Sadki, S. (2014) Are tomorrow's micro-supercapacitors hidden in a forest of silicon nanotrees? J. Power Sources, 269 740–746.   
Added by: Laurent Cournède 2016-03-10 21:01:54 Pop. 0.5%
Thissandier, F., Le Comte, A., Crosnier, O., Gentile, P., Bidan, G., Hadji, E., Brousse, T. & Sadki, S. (2012) Highly doped silicon nanowires based electrodes for micro-electrochemical capacitor applications. Electrochem. Commun. 25 109–111.   
Added by: Laurent Cournède 2016-03-10 21:28:38 Pop. 0.5%
Thissandier, F., Gentile, P., Pauc, N., Hadji, E., Le Comte, A., Crosnier, O., Bidan, G., Sadki, S. & Brousse, T. (2013) Highly N-doped Silicon Nanowires as a Possible Alternative to Carbon for On-chip Electrochemical Capacitors. Electrochemistry, 81 777–782.   
Added by: Laurent Cournède 2016-03-10 21:23:29 Pop. 0.5%
Thissandier, F., Pauc, N., Brousse, T., Gentile, P. & Sadki, S. (2013) Micro-ultracapacitors with highly doped silicon nanowires electrodes. Nanoscale Res. Lett. 8 1–5.   
Added by: Laurent Cournède 2016-03-10 21:23:31 Pop. 0.5%
Weissmann, M., Crosnier, O., Brousse, T. & Belanger, D. (2012) Electrochemical study of anthraquinone groups, grafted by the diazonium chemistry, in different aqueous media-relevance for the development of aqueous hybrid electrochemical capacitor. Electrochim. Acta, 82 250–256.   
Added by: Laurent Cournède 2016-03-10 21:28:38 Pop. 0.5%
Zuniga Martinez, J. A., Lucio Porto, R., Moreno Cortez, I. E., Brousse, T., Aguilar Martinez, J. A. & Lopez Pavon, L. A. (2018) MnPO4 center dot H2O as Electrode Material for Electrochemical Capacitors. Journal of the Electrochemical Society, 165 A2349–A2356.   
Last edited by: Richard Baschera 2018-08-23 08:14:01 Pop. 0.75%
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wikindx 4.2.2 ©2014 | Références totales : 2592 | Requêtes métadonnées : 85 | Exécution de script : 0.22276 secs | Style : Harvard | Bibliographie : Bibliographie WIKINDX globale