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Bais, P., Caldes, M. T., Guillot-Deudon, C., Renaud, A., Boujtita, M., Jobic, S. & Lafond, A. (2021) Influence of the copper deficiency and anionic composition on band-energy diagram of bulk kesterite CZTSSe. MATERIALS RESEARCH BULLETIN, 139.   
Last edited by: Richard Baschera 2021-06-03 10:06:17 Pop. 1.25%
Chavillon, B., Cario, L., Renaud, A., Tessier, F., Chevire, F., Boujtita, M., Pellegrin, Y., Blart, E., Smeigh, A., Hammarstrom, L., Odobel, F. & Jobic, S. (2012) P-Type Nitrogen-Doped ZnO Nanoparticles Stable under Ambient Conditions. J. Am. Chem. Soc. 134 464–470.   
Last edited by: Richard Baschera 2016-08-30 10:00:32 Pop. 1.25%
Favereau, L., Pellegrin, Y., Hirsch, L., Renaud, A., Planchat, A., Blart, E., Louarn, G., Cario, L., Jobic, S., Boujtita, M. & Odobel, F. (2017) Engineering Processes at the Interface of p-Semiconductor for Enhancing the Open Circuit Voltage in p-Type Dye-Sensitized Solar Cells. Advanced Energy Materials, 7 1601776.   
Last edited by: Richard Baschera 2017-07-10 13:37:40 Pop. 1%
Herraiz-Cardona, I., Fabregat-Santiago, F., Renaud, A., Julian-Lopez, B., Odobel, F., Cario, L., Jobic, S. & Gimenez, S. (2013) Hole conductivity and acceptor density of p-type CuGaO2 nanoparticles determined by impedance spectroscopy: The effect of Mg doping. Electrochim. Acta, 113 570–574.   
Added by: Laurent Cournède 2016-03-10 21:23:29 Pop. 1%
Koussi-Daoud, S., Planchat, A., Renaud, A., Pellegrin, Y., Odobel, F. & Pauporte, T. (2017) Solvent-Templated Electrodeposition of Mesoporous Nickel Oxide Layers for Solar Cell Applications. Chemelectrochem, 4 2618–2625.   
Last edited by: Richard Baschera 2020-07-03 08:21:32 Pop. 2.25%
Pellegrin, Y., Le Pleux, L., Blart, E., Renaud, A., Chavillon, B., Szuwarski, N., Boujtita, M., Cario, L., Jobic, S., Jacquemin, D. & Odobel, F. (2011) Ruthenium polypyridine complexes as sensitizers in NiO based p-type dye-sensitized solar cells: Effects of the anchoring groups. J. Photochem. Photobiol. A-Chem. 219 235–242.   
Added by: Laurent Cournède 2016-03-10 21:32:21 Pop. 1%
Renaud, A., Chavillon, B., Cario, L., Le Pleux, L., Szuwarski, N., Pellegrin, Y., Blart, E., Gautron, E., Odobel, F. & Jobic, S. (2013) Origin of the Black Color of NiO Used as Photocathode in p-Type Dye-Sensitized Solar Cells. J. Phys. Chem. C, 117 22478–22483.   
Added by: Laurent Cournède 2016-03-10 21:23:29 Pop. 1%
Renaud, A., Cario, L., Rocquelfelte, X., Deniard, P., Gautron, E., Faulques, E., Das, T., Chevire, F., Tessier, F. & Jobic, S. (2015) Unravelling the origin of the giant Zn deficiency in wurtzite type ZnO nanoparticles. Sci Rep, 5 12914.   
Last edited by: Richard Baschera 2016-08-30 09:20:07 Pop. 1.25%
Renaud, A., Cario, L., Deniard, P., Gautron, E., Rocquefelte, X., Pellegrin, Y., Blart, E., Odobel, F. & Jobic, S. (2014) Impact of Mg Doping on Performances of CuGaO2 Based p-Type Dye-Sensitized Solar Cells. J. Phys. Chem. C, 118 54–59.   
Last edited by: Richard Baschera 2021-04-20 13:17:22 Pop. 1.25%
Renaud, A., Cario, L., Pellegrin, Y., Blart, E., Boujtita, M., Odobel, F. & Jobic, S. (2015) The first dye-sensitized solar cell with p-type LaOCuS nanoparticles as a photocathode. RSC Adv. 5 60148–60151.   
Added by: Laurent Cournède 2016-03-10 18:36:42 Pop. 1%
Renaud, A., Grasset, F., Dierre, B., Uchikoshi, T., Ohashi, N., Takei, T., Planchat, A., Cario, L., Jobic, S., Odobel, F. & Cordier, S. (2016) Inorganic Molybdenum Clusters as Light-Harvester in All Inorganic Solar Cells: A Proof of Concept. ChemistrySelect, 1 2284–2289.   
Last edited by: Richard Baschera 2017-04-03 12:25:04 Pop. 1%
Renaud, A., Chavillon, B., Le Pleux, L., Pellegrin, Y., Blart, E., Boujtita, M., Pauporte, T., Cario, L., Jobic, S. & Odobel, F. (2012) CuGaO2: a promising alternative for NiO in p-type dye solar cells. J. Mater. Chem. 22 14353–14356.   
Added by: Laurent Cournède 2016-03-10 21:28:40 Pop. 1%
Renaud, A., Jouan, P.-Y., Dumait, N., Ababou-Girard, S., Barreau, N., Uchikoshi, T., Grasset, F., Jobic, S. & Cordier, S. (2022) Evidence of the Ambipolar Behavior of Mo-6 Cluster Iodides in All-Inorganic Solar Cells: A New Example of Nanoarchitectonic Concept. ACS Appl. Mater. Interfaces, 14 1347–1354.   
Last edited by: Richard Baschera 2022-01-14 08:06:23 Pop. 2.5%
wikindx 4.2.2 ©2014 | Références totales : 2830 | Requêtes métadonnées : 77 | Exécution de script : 0.46736 secs | Style : Harvard | Bibliographie : Bibliographie WIKINDX globale