Zobrazeno 1 - 10
of 24
pro vyhledávání: '"O. K. Alekseeva"'
Autor:
Nataliya A. Ivanova, Ekaterina S. Kudinova, Sergey A. Grigoriev, E. A. Vorobyeva, Pierre Millet, Ratibor G. Chumakov, O. K. Alekseeva, E. V. Kukueva, A. A. Zasypkina, Dmitry D. Spasov
Publikováno v:
International Journal of Hydrogen Energy. 46:18093-18106
We report on a comparative study of the performance level of H2/O2 PEM fuel cells in which the catalytic layers containing Pt nanoparticles were deposited on the microporous layer side of gas diffusion electrodes, using three different deposition tec
Autor:
Nataliya A. Ivanova, E. S. Kudinova, O. K. Alekseeva, B. L. Shapir, E. V. Kukueva, S. V. Akel’kina
Publikováno v:
Nanotechnologies in Russia. 15:708-714
In this paper, we study the effect of platinum loading on the structure, density, and uniformity of deposition of a platinum film sputtered by a magnetron, as well as on the electrochemical characteristics of the deposited electrodes, such as the ele
Publikováno v:
Nanotechnologies in Russia. 15:715-722
A study on the optimization of the method of application of the Ni catalyst for the growth of carbon nanotubes (CNTs) onto the gas diffusion layers (GDLs) (predominantly carbon cloths) by magnetron sputtering is presented. The mode of magnetron sputt
Autor:
A. S. Pushkarev, M V Kozlova, Ratibor G. Chumakov, Valery N. Kalinichenko, Vladimir N. Fateev, O. K. Alekseeva, B. L. Shapir, I. V. Pushkareva, V. V. Tishkin
Publikováno v:
Nanotechnologies in Russia. 15:735-740
Carbon nanomaterials doped with heteroatoms, in particular, nitrogen atoms, are of great interest for electrochemical power engineering as nonmetallic catalysts or carriers of catalytically active metal nanoparticles. A nanostructured, reduced graphe
Publikováno v:
Nanotechnologies in Russia
The review is devoted to current and promising areas of application of graphene and materials based on it for generating environmentally friendly hydrogen energy. Analysis of the results of theoretical and experimental studies of hydrogen accumulatio
Autor:
Mikhail Yu. Presnyakov, Dmitry D. Spasov, Maksim A. Soloviev, O. K. Alekseeva, Sergey A. Grigoriev, Artem I. Mikhalev, B. L. Shapir, S. I. Nikitin, Natalia N. Kolobylina, Vladimir N. Fateev, Nataliya A. Ivanova
Publikováno v:
International Journal of Hydrogen Energy. 44:29529-29536
This article presents development of magnetron sputtering technology for catalytic Pt coating production. Low Pt-loaded gas diffusion electrodes were prepared by a single-step magnetron sputtering in different regimes. Pt and Pt-carbon films (95–97
Autor:
A. S. Pushkarev, I. I. Nikolaev, E. K. Lyutikova, V V Markelov, O. K. Alekseeva, V. I. Porembskii, S. V. Akel’kina, S V Ostrovskii, A. A. Kalinnikov, Vladimir N. Fateev, I. E. Baranov, I. V. Pushkareva, M.A. Solovyev
Publikováno v:
Chemical Problems. 17:489-499
Autor:
Artem I. Mikhalev, Mikhail Yu. Presnyakov, Vladimir N. Fateev, V.I. Porembsky, Elena K. Lutikova, Sergey A. Grigoriev, B. L. Shapir, O. K. Alekseeva
Publikováno v:
Catalysts
Volume 8
Issue 12
Catalysts, Vol 8, Iss 12, p 665 (2018)
Volume 8
Issue 12
Catalysts, Vol 8, Iss 12, p 665 (2018)
This article is devoted to further development of magnetron sputtering technology for catalysts and catalysts layer production for fuel cells and other electrochemical devices. Platinum-carbon films with Pt content up to 95&ndash
97 wt % were de
97 wt % were de
Autor:
Vladimir N. Fateev, Elena K. Lutikova, Artem I. Mikhalev, O. K. Alekseeva, Vladimir Porembskiy, S. I. Nikitin
Publikováno v:
International Journal of Hydrogen Energy. 41:10515-10521
Possibility of ion implantation and magnetron sputtering for the increase of catalyst activity and corrosion/oxidation stability of Ti components for PEM electrolyzer was studied. Porous and not-porous Ti samples modified by Pt deposition or implanta
Publikováno v:
Russian Journal of Inorganic Chemistry. 52:29-33
The main trends of the chemistry of hydrides of transition metals and their alloys are briefly reviewed. “Sensational” hydrogen capacity data and the potential of some metal materials (metals, alloys, and quasi-crystals) and carbon nanomaterials