Academic literature on the topic 'Hydroxyde de nickel'

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Journal articles on the topic "Hydroxyde de nickel"

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Dubé, Patrick, Louis Brossard, and Hugues Ménard. "Hydrogénation électrocatalytique sur des catalyseurs composites de nickel et hydroxyde d'aluminium en cellule dynamique." Canadian Journal of Chemistry 80, no. 4 (2002): 345–49. http://dx.doi.org/10.1139/v02-024.

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The electrocatalytic hydrogenation (ECH) of cyclohexanone into cyclohexanol has been studied in aqueous media with electrocatalysts on composites powders. These powders are formed of nanoaggregates of nickel obtained through a physical deposition under vacuum on particles of Al(OH)3, AlO(OH), and γ-Al2O3. The ECH reaction was done in a dynamic cell. Its yield is closely dependent on the nature of the non-metallic particles whose nature greatly influences the adsorption–desorption of the organic compounds involved in the reaction.Key words: electrocatalysis, aluminum oxide, aluminum hydroxide,
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Shang, Wei, Chang Jiu Liu, and Yu Qing Wen. "Morphology and Electrochemical Performance of Amorphous Nickel Hydroxide Added Anion." Advanced Materials Research 834-836 (October 2013): 466–71. http://dx.doi.org/10.4028/www.scientific.net/amr.834-836.466.

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Amorphous nickel hydroxides added anion (PO43-) has been prepared by chemical precipitation method combined with rapid quench technique. The morphology of the prepared samples were characterized by scanning electron microscope (SEM), and energy dispersive spectroscopy (EDS). The effect of anion on the electrochemical performance of the prepared nickel hydroxides were investigated by charge/discharge tests and cyclic voltammetry (CV). The results demonstrated that amorphous nickel hydroxide added PO43-has better electrochemical performance, such as higher discharge potential, better reaction re
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Balram, Anirudh, Jie Chao Jiang, Moisés Hernández Fernández, and Dennis De Sheng Meng. "Nickel-Cobalt Double Hydroxide Decorated Carbon Nanotubes via Aqueous Electrophoretic Deposition towards Catalytic Glucose Detection." Key Engineering Materials 654 (July 2015): 70–75. http://dx.doi.org/10.4028/www.scientific.net/kem.654.70.

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In this work, we present a facile technique based on electrophoretic deposition (EPD) to produce transition metal hydroxide decorated carbon nanotubes (CNT) for electrochemical applications. We specifically explore the performance of nickel-cobalt hydroxides given their high activity, conductivity and stability as compared to the individual hydroxides. We exploit the high local pH at the negative electrodes during water-based EPD to form nanoparticles of nickel-cobalt hydroxides in situ on the CNT surface. We focus our work here on obtaining functional and conductive deposits on CNTs. The hydr
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Hall, David S., David J. Lockwood, Christina Bock, and Barry R. MacDougall. "Nickel hydroxides and related materials: a review of their structures, synthesis and properties." Proceedings of the Royal Society A: Mathematical, Physical and Engineering Sciences 471, no. 2174 (2015): 20140792. http://dx.doi.org/10.1098/rspa.2014.0792.

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This review article summarizes the last few decades of research on nickel hydroxide, an important material in physics and chemistry, that has many applications in engineering including, significantly, batteries. First, the structures of the two known polymorphs, denoted as α -Ni(OH) 2 and β -Ni(OH) 2 , are described. The various types of disorder, which are frequently present in nickel hydroxide materials, are discussed including hydration, stacking fault disorder, mechanical stresses and the incorporation of ionic impurities. Several related materials are discussed, including intercalated α -
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Sidorova, Elena N., Ella L. Dzidziguri, Yulia P. Vinichenko, et al. "Metal Nanoparticles Formation from Nickel Hydroxide." Materials 13, no. 20 (2020): 4689. http://dx.doi.org/10.3390/ma13204689.

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In this study, the mechanism of nickel nanoparticle formation from its hydroxide was analyzed. Metallic nickel nanoparticles were obtained through the hydroxide’s reduction under hydrogen. Nickel hydroxides were produced from nickel (II) nitrate hexahydrate and NaOH by deposition under various initial conditions. The influence of washing treatment on the dispersion of obtained nickel powders was studied. The washing procedure of precipitates was carried out by centrifugation, ultrasonic treatment, and decantation. X-ray diffractometry, transmission electron microscopy, low-temperature nitrogen
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Yin, Jingzhou, Guolang Zhou, Xiaoliang Gao та ін. "α- and β-Phase Ni-Mg Hydroxide for High Performance Hybrid Supercapacitors". Nanomaterials 9, № 12 (2019): 1686. http://dx.doi.org/10.3390/nano9121686.

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Mg-substituted α- and β-phase nickel hydroxides with high specific capacitance and good stability have been synthesized via sacrificial metal-based replacement reaction. 2D α- and β-phase nickel-magnesium hydroxide (NiMg-OH) have been synthesized by sacrificing magnesium (Mg) powder with nickel salt aqueous solutions. Interestingly, the phase of the obtained NiMg-OH can be controlled by adjusting the nickel precursor. As well, the Mg powder is used not only as Mg source but also alkali source to form NiMg-OH. The α-phase nickel-magnesium hydroxide sample (α-NiMg-OH) exhibits lager surface area
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Ramesh, T. N., P. Vishnu Kamath, and C. Shivakumara. "Classification of stacking faults and their stepwise elimination during the disorder → order transformation of nickel hydroxide." Acta Crystallographica Section B Structural Science 62, no. 4 (2006): 530–36. http://dx.doi.org/10.1107/s0108768106013188.

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Nickel hydroxide samples obtained by strong alkali precipitation are replete with stacking faults. The local structures of the stacking faults resemble the stacking patterns of different polytypic modifications that are theoretically possible among the layered hydroxides. This resemblance becomes a basis for the classification of stacking faults into different types. Each type of stacking fault produces a characteristic non-uniform broadening of peaks in the X-ray powder diffraction pattern of nickel hydroxide. DIFFaX simulations aid the classification and quantification of stacking faults. Hy
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Thimmasandra Narayan, Ramesh. "Effect of Crystallinity of β- and βbc-Nickel Hydroxide Samples on Chemical Cycling". Indian Journal of Materials Science 2015 (27 липня 2015): 1–7. http://dx.doi.org/10.1155/2015/820193.

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β-phases of nickel hydroxide and cobalt hydroxide samples crystallize in cadmium iodide type structure. β-cobalt hydroxide on oxidation generates β-CoOOH which crystallized in 3R1 polytype while the structure of β-phase of NiOOH polytype is less well understood. β- and βbc-phases of nickel hydroxide samples were prepared by using ammonium hydroxide and sodium hydroxide as precipitating agents. Powder X-ray diffraction data shows that β-phase of nickel hydroxide is perfectly crystalline in nature while βbc-phase of nickel hydroxide is poorly ordered. β- and βbc-phases of nickel hydroxide sample
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Ramesh, Thimmasandra Narayan. "Effect of Substituents on the Electrochemical Reversible Discharge Capacity of Cobalt Hydroxide Electrodes." Journal of New Materials for Electrochemical Systems 18, no. 2 (2015): 091–93. http://dx.doi.org/10.14447/jnmes.v18i2.375.

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Cobalt hydroxide, nickel hydroxide-cobalt hydroxide and zinc oxide-cobalt hydroxide biphasic mixtures were prepared by precipitation method. In spite of structural similarities exhibited by nickel hydroxide and cobalt hydroxide samples, former is a good electrode material and exchanges 1e-/Ni while latter does not show any reversibility. Presence of small amount of other metal ions such as nickel or zinc in the lattice of cobalt hydroxide or as a biphasic mixture of cobalt hydroxide-nickel hydroxide/cobalt hydroxide- zinc oxide, exchange up to 0.2 to 0.24e- exchange compared to pure cobalt hyd
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Liu, Chang Jiu, Chun Xiao Xing, Shi Juan Chen, and Yan Wei Li. "Structure and Electrochemical Performance of Amorphous Nickel Hydroxide Doped with La and Al." Materials Science Forum 663-665 (November 2010): 1217–20. http://dx.doi.org/10.4028/www.scientific.net/msf.663-665.1217.

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Amorphous nickel hydroxide powders doped with rare earth La3+ and Al3+ were synthesized by the combined chemical precipitation and rapid freezing method. The microstructure of the samples was characterized by XRD and Raman spectra. The electrochemical performance of the prepared samples was analyzed by electrochemical impedance spectroscopy and charge-discharge tests. The results showed that this amorphous nickel hydroxide codoped with La3+ and Al3+ had more structural defects than those of the undoped amorphous nickel hydroxide and La3+ singly doped amorphous nickel hydroxide. These abundant
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Dissertations / Theses on the topic "Hydroxyde de nickel"

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Carlach, Philippe. "Précipitation homogène ou polyphasique par décomplexation thermique : application à la synthèse d'hydroxydes de nickel à partir de solutions ammoniacales." Paris, ENMP, 2003. http://www.theses.fr/2003ENMP1149.

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Gourrier, Laure. "Contribution à l'étude de l'hydroxyde de Nickel : aspects fondamentaux et influence du Zinc." Thesis, Montpellier 2, 2011. http://www.theses.fr/2011MON20232/document.

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Ce travail est peut être séparé en deux parties. Dans la première, nous rapportons l'étude menée sur un composé modèle d'hydroxyde de Nickel. La caractérisation de ce composé par diffraction X montre qu'il possède une cristallinité supérieure aux hydroxydes de nickel habituellement utilisés. L'observation au microscope électronique à balayage révèle que la poudre est constituée de grains hexagonaux, de dimension supérieure au micromètre, formés de monocristaux, eux aussi hexagonaux, empilés de façon très ordonnée. Les mesures électrochimiques montrent quant à elles que les composés modèles pré
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MANCIER, VALERIE. "Contribution a l'etude de l'electrode a hydroxyde de nickel : application aux accumulateurs nickel-cadmium ; determination de l'etat de charge et modelisation." Reims, 1995. http://www.theses.fr/1995REIMS023.

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Les accumulateurs alcalins sont connus pour leur fiabilite. La constance de leur tension de decharge, avantageuse en soi, se revele etre un handicap pour la determination de l'etat de charge. Nous avons etudie par spectroscopie d'impedance l'electrode a hydroxyde de nickel (e. H. N. ) de ces accumulateurs et en proposons une modelisation susceptible d'aider a la determination dudit etat de charge. La reaction de charge/decharge de l'e. H. N. Peut etre consideree comme une deinsertion/insertion du proton dans la matrice lamellaire de l'hydroxyde. L'e. H. N. Possede de fait une conduction mixte
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Li, Min. "Preparation of composite materials for high-performance supercapacitors." Thesis, Lille 1, 2020. http://www.theses.fr/2020LIL1I011.

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Les supercondensateurs, en tant que dispositifs de stockage d'énergie, ont attiré une grande attention dans notre vie quotidienne pour combler l'écart entre les batteries et les condensateurs. Par conséquent, la préparation d'électrodes en matériaux composites à hautes performances pour les supercondensateurs joue un rôle vital dans leurs futurs développements technologiques. Dans ce contexte, les hydroxydes doubles lamellaires (HDL) et Ni(OH)2 ont été reconnus comme des électrodes prometteuses pour les supercondensateurs en raison de leurs réactions redox rapides et de leur comportement de ty
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Meyer, Michaël. "Synthèse et propriétés d'organisation de particules plaquettaires d'hydroxyde de nickel dispersées par voie électrostatique." Paris 6, 2003. http://www.theses.fr/2003PA066386.

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Bounif, Mohamed. "Modélisation et affinement des structures locales de matériaux désordonnés à base d'oxyde-hydroxyde de nickel par spectroscopie d'absorption des rayons X." Phd thesis, Université Paris-Est, 2009. http://tel.archives-ouvertes.fr/tel-00476908.

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Les composés électrochomes changent de couleur en fonction d'une tension qui leur est appliquée. La tenue en cyclage de couches minces à base de NiO, électrochrome cathodique, dépend fortement de la température et de la pression de dépôt. D'autre part la proportion de phase électrochimiquement active dépend fortement de l'épaisseur des couches. Selon le modèle proposé NiO en milieu KOH se transforme en hydroxyde de nickel Ni(OH)2 puis dans la phase de coloration en oxyhydroxyde NiOOH avant de revenir à sa forme réduite durant la phase décoloration. À la fin de ce cycle, des traces de phase col
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Adán, Mas Alberto. "Advanced metal graphene composite electrodes for a new generation of electrochemical energy storage devices." Thesis, Bordeaux, 2018. http://www.theses.fr/2018BORD0181/document.

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Actuellement, les supercondensateurs sont au centre de beaucoup de recherches. Ils offrent une solution potentielle pour le stockage réversible de l´énergie que ce soit pour le domaine spatial, aéronautique ou encore le transport (véhicules hybrides). Un axe de recherche important, visant à augmenter les densités d'énergie et de puissance, est consacré aux systèmes oxydes de métaux de transition /charbon actif (C) asymétriques. Les systèmes à base de RuO2 présentent les capacités les plus élevées, supérieures à 700 F/g, mais leur coût et leur toxicité limitent leur application aux petits appar
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Gautier, Laurent. "Influence du cobalt sur le comportement de l'hydroxyde de nickel dans les batteries alcalines : du substituant au collecteur de charges." Phd thesis, Université Sciences et Technologies - Bordeaux I, 1995. http://tel.archives-ouvertes.fr/tel-00142532.

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Ce travail est consacre à la synthèse et à la caractérisation de nouveaux hydroxydes de nickel substitues au cobalt et à l'aluminium. La présence de 25% d'ions trivalents permet d'assurer la cohésion de la structure de type alpha, ainsi que la stabilité chimique de ces matériaux en milieu alcalin concentre. L'étude électrochimique montre que le couple alpha/gamma est parfaitement stabilise lorsque le taux d'aluminium est supérieur a 15%. En revanche, pour des taux inférieurs, il se produit une évolution progressive du couple alpha/gamma vers le couple bêta (II)/bêta (III), accompagnée d'une ba
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Laksono, Endang Widjajanti. "Etude de l'interaction de l'ammoniac avec des surfaces de Ni(111) pré-traitées sous oxygène et influence de l'hydroxylation." Paris 6, 2001. http://www.theses.fr/2001PA066446.

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ROCHE, BERTRAND. "Preparation de poudres de nickel par le procede polyol a partir de precurseurs hydroxydes et hydroxy-carbonates de nickel." Amiens, 1993. http://www.theses.fr/1993AMIES026.

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Ce travail concerne la preparation de poudres de nickel par le procede polyol. Dans ce procede un precurseur est mis en suspension dans un polyol qui joue le role de solvant et de reducteur ; le metal precipite alors par nucleation homogene et croissance a partir de la solution. L'objectif etait de preparer des poudres de nickel monodisperses de taille et de forme controlees a partir de precurseurs hydroxydes et hydroxy-carbonates de nickel. Ces precurseurs ont ete caracterises par diffraction x, microscopie electronique, ir, dsc, tg, mesure de surfaces specifiques et analyses chimiques et le
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Books on the topic "Hydroxyde de nickel"

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Bode, H. Study of nickel hydroxide electrodes II oxidation products of nickel (II) hydroxides. National Aeronautics and Space Administration, 1986.

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Thomas, Martin Alexander. Studies relating to the nickel hydroxide electrode. Universityof Birmingham, 1988.

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Symposium on Nickel Hydroxide Electrodes (1989 Hollywood, Fla.). Proceedings of the Symposium on Nickel Hydroxide Electrodes. Electrochemical Society, 1990.

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Robertson, Kevin. Characterization of nickel hydroxide sludge using the variable pressure SEM. Dept.of Mining, Metals and Materials Engineering, McGill University, 2004.

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Graydon, J. W. Corrosion of nickel and stainless steels in concentrated lithium hydroxide solutions. Dept. of Chemical Engineering and Applied Chemistry, University of Toronto, 1990.

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Whittenberger, J. Daniel. Mechanical properties of pure nickel alloys after long term exposures to LiOH and vacuum at 775 K. NASA, 1990.

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Corrigan. Nickel Hydroxide Electrodes. Electrochemical Society, 1990.

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B, Lafage, Leonardi J, and United States. National Aeronautics and Space Administration., eds. Improvement of the process for electrochemical impregnation of nickel hydroxide electrodes. National Aeronautics and Space Administration, 1986.

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Parker, Philip M. The 2007-2012 World Outlook for Nickel Compounds Excluding Nickel Oxides, Hydroxides, Nickel Chloride, and Nickel Sulfate. ICON Group International, Inc., 2006.

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The 2006-2011 World Outlook for Nickel Compounds Excluding Nickel Oxides, Hydroxides, Nickel Chloride, and Nickel Sulfate. Icon Group International, Inc., 2005.

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Book chapters on the topic "Hydroxyde de nickel"

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McBreen, James. "Nickel Hydroxides." In Handbook of Battery Materials. Wiley-VCH Verlag GmbH & Co. KGaA, 2011. http://dx.doi.org/10.1002/9783527637188.ch5.

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Coudun, C., and Jean-François Hochepied. "Precipitation of Nickel Hydroxides from Nickel Dodecylsulphate." In Solid State Phenomena. Trans Tech Publications Ltd., 2005. http://dx.doi.org/10.4028/3-908451-10-8.35.

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Okamoto, T., Jian Guang Yang, Kotaro Kuroda, R. Ichino, and Masazumi Okido. "Preparation of Size and Aggregation Controlled Nickel Oxalate Dihydrate Particles from Nickel Hydroxide." In THERMEC 2006 Supplement. Trans Tech Publications Ltd., 2006. http://dx.doi.org/10.4028/0-87849-429-4.581.

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Wu, Xiao Feng, Yun Fa Chen, Qun Yan Li, and L. Q. Wei. "Preparation and Characterization of Integral Hollow Microspheres of Nickel Hydroxide and Nickel Oxide." In Solid State Phenomena. Trans Tech Publications Ltd., 2007. http://dx.doi.org/10.4028/3-908451-30-2.187.

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Jenssen, Ina Beate, Mona Aufles Hines, Ole Morten Dotterud, Oluf Bøckman, and Jens-Petter Andreassen. "Filtration Properties of Ferric Hydroxide Precipitate in Nickel Production." In The Minerals, Metals & Materials Series. Springer International Publishing, 2018. http://dx.doi.org/10.1007/978-3-319-95022-8_112.

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Schäfer, Hans-Jürgen. "Oxidation of organic compounds at the nickel hydroxide electrode." In Topics in Current Chemistry. Springer Berlin Heidelberg, 1987. http://dx.doi.org/10.1007/3-540-17871-6_13.

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Maizelis, Antonina A. "Electrooxidation of Ethanol on Nickel-Copper Multilayer Metal Hydroxide Electrode." In Springer Proceedings in Physics. Springer International Publishing, 2019. http://dx.doi.org/10.1007/978-3-030-17759-1_4.

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Maizelis, A. "Nickel–Copper Hydroxide Multilayer Coating as Anode Material for Methanol Electro-oxidation." In Springer Proceedings in Physics. Springer International Publishing, 2020. http://dx.doi.org/10.1007/978-3-030-52268-1_3.

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Marathey, Priyanka, Sakshum Khanna, Roma Patel, Indrajit Mukhopadhyay, and Abhijit Ray. "Pseudocapacitive Energy Storage in Copper Oxide and Hydroxide Nanostructures Casted Over Nickel-Foam." In Proceedings of the 7th International Conference on Advances in Energy Research. Springer Singapore, 2020. http://dx.doi.org/10.1007/978-981-15-5955-6_131.

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Maizelis, A., and B. Bairachniy. "Multilayer Nickel–Copper Metal Hydroxide Coating as Cathode Material for Hydrogen Evolution Reaction." In Lecture Notes in Mechanical Engineering. Springer Singapore, 2019. http://dx.doi.org/10.1007/978-981-13-6133-3_10.

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Conference papers on the topic "Hydroxyde de nickel"

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Song, Quansheng, C. H. Chiu, and S. L. I. Chan. "Nanocrystalline Nickel Hydroxide in Pasted Nickel Electrodes for Rechargeable Nickel Batteries." In 2006 International Conference on Nanoscience and Nanotechnology. IEEE, 2006. http://dx.doi.org/10.1109/iconn.2006.340567.

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Bakar, M. A., M. A. A. Hamid, A. Jalar, and R. Shamsudin. "Transformation nanostructured nickel hydroxide to nickel oxide film by aqueous chemical growth." In 2012 NATIONAL PHYSICS CONFERENCE: (PERFIK 2012). AIP, 2013. http://dx.doi.org/10.1063/1.4803625.

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Santos, G. A., A. G. S. G. Silva, L. S. Sanches, H. A. Ponte, and C. E. B. Marino. "Electrochemical detection of hydrogen uptake in electrodeposited nickel/nickel hydroxide system to prevent corrosion process." In 1st International Seminar on Industrial Innovation in Electrochemistry. Editora Edgard Blücher, 2014. http://dx.doi.org/10.5151/chempro-s3ie-08.

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Zhou, You, Zhengyong Huang, Jian Li, and Weigen Chen. "Nickel Cobalt Hydroxide/Reduced Graphene Oxide and Its Electrochemical Performance." In 2020 IEEE International Conference on High Voltage Engineering and Application (ICHVE). IEEE, 2020. http://dx.doi.org/10.1109/ichve49031.2020.9279677.

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Byrne, Kelly, William Hawker, and James Vaughan. "Effect of key parameters on the selective acid leach of nickel from mixed nickel-cobalt hydroxide." In PROCEEDINGS OF THE 1ST INTERNATIONAL PROCESS METALLURGY CONFERENCE (IPMC 2016). Author(s), 2017. http://dx.doi.org/10.1063/1.4974412.

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Qiao, Jie, Haifen Li, Zhongpin Li, Shaomin Shuang, and Chuan Dong. "Study on Electrochemical Behavior of Methane at Nickel Electrode Modified with Nickel Hydroxide in Alkaline Solution." In 2007 International Conference on Information Acquisition. IEEE, 2007. http://dx.doi.org/10.1109/icia.2007.4295693.

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Bhat, Karthik S., and H. S. Nagaraja. "Two-dimensional nickel hydroxide nanosheets as high performance pseudo-capacitor electrodes." In ADVANCES IN MECHANICAL DESIGN, MATERIALS AND MANUFACTURE: Proceedings of the First International Conference on Design, Materials and Manufacture (ICDEM 2018). Author(s), 2018. http://dx.doi.org/10.1063/1.5029633.

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Corrigan, Dennis A. "Electrochromic nickel hydroxide films and the effects of foreign metal ions." In Institutes for Advanced Optical Technologies, edited by Carl M. Lampert and Claes-Göran Granqvist. SPIE, 1990. http://dx.doi.org/10.1117/12.2283622.

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Viswanthan, Aranganathan, and Adka Nityananda Shetty. "Electrochemical comparison of nickel and nickel hydroxide nanoparticles composited with reduced graphene oxide and polyaniline for their supercapacitor application." In ADVANCES IN MECHANICAL DESIGN, MATERIALS AND MANUFACTURE: Proceedings of the First International Conference on Design, Materials and Manufacture (ICDEM 2018). Author(s), 2018. http://dx.doi.org/10.1063/1.5029642.

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Zhang, Hongyu, Zhikun Zhan, Yuliang Zhao, et al. "Electrochemical Detection of Insulin Based on Screen Printed Electrode Modified by Nickel Hydroxide." In 2018 IEEE 1st International Conference on Micro/Nano Sensors for AI, Healthcare, and Robotics (NSENS). IEEE, 2018. http://dx.doi.org/10.1109/nsens.2018.8713631.

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Reports on the topic "Hydroxyde de nickel"

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Mavis, Bora. Homogeneous Precipitation of Nickel Hydroxide Powders. Office of Scientific and Technical Information (OSTI), 2003. http://dx.doi.org/10.2172/822049.

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Crocker, Robert W., and Rolf H. Muller. Structural transformation of nickel hydroxide films during anodic oxidation. Office of Scientific and Technical Information (OSTI), 1992. http://dx.doi.org/10.2172/10158026.

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Crocker, R. W., and R. H. Muller. Structural transformation of nickel hydroxide films during anodic oxidation. Office of Scientific and Technical Information (OSTI), 1992. http://dx.doi.org/10.2172/5058501.

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Widjaja, Agus. Synthesis and characterization of nickel hydroxide powders for battery application. Office of Scientific and Technical Information (OSTI), 1997. http://dx.doi.org/10.2172/348926.

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Qian, X., H. Sambe, and D. E. Ramaker. Quantitative Interpretation of K-Edge NEXAFS Data for Various Nickel Hydroxides and the Charged Nickel Electrode. Defense Technical Information Center, 1996. http://dx.doi.org/10.21236/ada304545.

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Mansour, A. N., and C. A. Melendres. X-Ray Absorption Spectra and Structure of Some Nickel Oxides (Hydroxides). Defense Technical Information Center, 1994. http://dx.doi.org/10.21236/ada281305.

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Hu Lin Li, D. H. Robertson, J. Q. Chambers, and D. T. Hobbs. Electrochemical reduction of nitrate and nitrite in concentrated sodium hydroxide at platinum and nickel electrodes. Office of Scientific and Technical Information (OSTI), 1996. http://dx.doi.org/10.2172/385582.

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Li, H., J. Q. Chambers, and D. T. Hobbs. Electroreduction of nitrate ions in concentrated sodium hydroxide solutions at lead, zinc, nickel, and phthalocyanine-modified electrodes. Office of Scientific and Technical Information (OSTI), 1987. http://dx.doi.org/10.2172/665993.

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