Letteratura scientifica selezionata sul tema "Dégagement d'hydrogène"
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Tesi sul tema "Dégagement d'hydrogène":
Le, Helloco Jean-Guy. "Étude de poudres électrocatalytiques pour le dégagement d'hydrogène en milieu alcalin". Grenoble INPG, 1994. http://www.theses.fr/1994INPG0021.
Birry, Laurent. "Étude de la réaction de dégagement d'hydrogène en milieu alcalin sur des électrodes de nickel de Raney dopées au molybdène". Mémoire, Université de Sherbrooke, 2002. http://savoirs.usherbrooke.ca/handle/11143/4494.
Miousse, Danielle. "Mécanisme et cinétique de la réaction de dégagement d'hydrogène sur des électrodes à base d'alliages de nickel et d'oxyde de ruthénium". Thesis, National Library of Canada = Bibliothèque nationale du Canada, 1997. http://www.collectionscanada.ca/obj/s4/f2/dsk3/ftp04/nq26391.pdf.
Benzaid, Aïcha. "Etude du dégagement d'hydrogène sur électrode verticale en acier 42CD4, par la méthode du bruit électrochimique : application à la fragilisation par l'hydrogène". Châtenay-Malabry, Ecole centrale de Paris, 1992. http://www.theses.fr/1992ECAP0234.
Menini, Richard. "Etude de différents paramètres physico-chimiques et de la nature de l'électrode en électrocatalyse : application à l'électrohydrogénation catalytique et à la réaction de dégagement d'hydrogène". Lyon 1, 1994. http://www.theses.fr/1994LYO10268.
Gasco, Owens Ana Sofía. "Anodisation pulsée de l’aluminium en milieu sulfurique : mécanismes et applications". Electronic Thesis or Diss., Université de Lorraine, 2023. http://www.theses.fr/2023LORR0025.
Pulse/cyclic anodizing processes have been gaining attraction for some time now, mainly because, with this technology, it is possible to create porous anodic aluminum oxide (AAO) layers with a tailored morphology. Unfortunately, the design of these complex pulse signals remains empirical due to the lack of basic knowledge of the mechanisms occurring during the processes. The presented work aims to shed some light on that matter, keeping in mind that this information could be used to predict and design new nanostructures as well as to optimize the process itself. To this end, this research combines in situ electrochemical measurements (polarizing, EIS, OCP) with ex situ morphological observations (FE-SEM, STEM) to identify the mechanisms occurring throughout: (i) a decrease of potential from the anodic domain to the limit of the cathodic one (reverse scan polarization) of a classic-anodized Al, (ii) a bipolar pulse anodizing process on Al, and (iii) a unipolar pulse anodizing process on pure Al and on AA2024. Additionally, a bipolar pulse signal is designed to obtain an AAO with a white aspect characterized by spectrophotometry, and a unipolar pulse signal to anodize with a high growth rate without damaging the integrity of the anodic layer through the burning phenomenon