IMN

Biblio. IMN

Liste de références

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Alves, W. A., Fiorito, P. A., Froyer, G., El Haber, F., Vellutini, L., Torresi, R. M. & de Torresi, S. C. I. (2008) Immobilization of Catalysts of Biological Interest on Porous Oxidized Silicon Surfaces. J. Nanosci. Nanotechnol. 8 3570–3576.   
Added by: Laurent Cournède 2016-03-10 21:58:41 Pop. 0.75%
Badeva, D., Tran-Van, F., Beouch, L., Chevrot, C., Markova, I., Racheva, T. & Froyer, G. (2012) Embedding and electropolymerization of terthiophene derivatives in porous n-type silicon. Mater. Chem. Phys. 133 592–598.   
Added by: Laurent Cournède 2016-03-10 21:28:39 Pop. 0.5%
Berrada, K., Targaoui, H., Kaddouri, A., Louarn, G., Froyer, G. & Outzourhit, A. (2007) Light emission and scanning electron microscopic characterization of porous silicon. Spectr. Lett. 40 753–762.   
Added by: Laurent Cournède 2016-03-10 22:02:31 Pop. 0.5%
Berton, N., Brachet, M., Thissandier, F., Le Bideau, J., Gentile, P., Bidan, G., Brousse, T. & Sadki, S. (2014) Wide-voltage-window silicon nanowire electrodes for micro-supercapacitors via electrochemical surface oxidation in ionic liquid electrolyte. Electrochem. Commun. 41 31–34.   
Added by: Florent Boucher 2016-04-29 09:26:44 Pop. 0.5%
Errien, N., Vellutini, L., Louarn, G. & Froyer, G. (2007) Surface characterization of porous silicon after pore opening processes, inducing chemical modifications. Appl. Surf. Sci. 253 7265–7271.   
Added by: Laurent Cournède 2016-03-10 22:02:30 Pop. 0.75%
Gaboriau, D., Boniface, M., Valero, A., Aldakov, D., Brousse, T., Gentile, P. & Sadki, S. (2017) Atomic Layer Deposition Alumina-Passivated Silicon Nanowires: Probing the Transition from Electrochemical Double-Layer Capacitor to Electrolytic Capacitor. ACS Appl. Mater. Interfaces, 9 13761–13769.   
Last edited by: Richard Baschera 2017-06-20 15:25:02 Pop. 0.5%
Gaboriau, D., Aradilla, D., Brachet, M., Le Bideau, J., Brousse, T., Bidan, G., Gentile, P. & Sadki, S. (2016) Silicon nanowires and nanotrees: elaboration and optimization of new 3D architectures for high performance on-chip supercapacitors. RSC Adv. 6 81017–81027.   
Last edited by: Richard Baschera 2016-10-31 10:32:33 Pop. 1%
Gallach, D., Le Brizoual, L., Gautier, N., Ynsa, M. D., Torres Costa, V., Ceccone, G., Landesman, J. P. & Manso Silvan, M. (2015) Microstructure based optical modeling of ZnO-porous silicon permeated nanocomposites. J. Phys. D-Appl. Phys. 48 295102.   
Added by: Laurent Cournède 2016-03-10 18:36:41 Pop. 0.5%
Miska, P., Dossot, M., Nguyen, T. D., Gruen, M., Rinnert, H., Vergnat, M. & Humbert, B. (2010) Embedded Silicon Nanocrystals Studied by Photoluminescence and Raman Spectroscopies: Exciton and Phonon Confinement Effects. J. Phys. Chem. C, 114 17344–17349.   
Added by: Laurent Cournède 2016-03-10 21:37:31 Pop. 0.75%
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., 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%
Thissandier, F., Gentile, P., Pauc, N., Brousse, T., Bidan, G. & Sadkia, S. (2014) Tuning silicon nanowires doping level and morphology for highly efficient micro-supercapacitors. Nano Energy, 5 20–27.   
Added by: Florent Boucher 2016-04-29 09:26:44 Pop. 0.5%
Thissandier, F., Dupre, L., Gentile, P., Brousse, T., Bidan, G., Buttard, D. & Sadki, S. (2014) Ultra-dense and highly doped SiNWs for micro-supercapacitors electrodes. Electrochim. Acta, 117 159–163.   
Added by: Florent Boucher 2016-04-29 09:26:45 Pop. 0.5%
wikindx 4.2.2 ©2014 | Références totales : 2592 | Requêtes métadonnées : 83 | Exécution de script : 0.10431 secs | Style : Harvard | Bibliographie : Bibliographie WIKINDX globale