Zobrazeno 1 - 10
of 23
pro vyhledávání: '"F N Putilin"'
Publikováno v:
Petroleum Chemistry. 61:1111-1117
Autor:
Olga D. Khramova, A. A. Yarukov, F. N. Putilin, D. S. Gusev, Oleg Alexeyevic Novodvorsky, L. S. Parshina
Publikováno v:
Inorganic Materials. 56:382-387
Amorphous dielectric WO3 films with a surface roughness from 4 to 5 nm have been grown by room-temperature pulsed laser deposition on quartz and c-sapphire substrates using metallic targets. We have examined the effect of the nature of the substrates
Autor:
Valeriy V. Andreychev, Olga D. Khramova, G. Meshkov, F. N. Putilin, Oleg Alexeyevic Novodvorsky, Alexander V. Egorov, L. S. Parshina, Serguei V. Savilov, Pavel A. Shchur
Publikováno v:
Carbon Trends, Vol 5, Iss, Pp 100099-(2021)
Structural features of carbon nanotubes make them highly promising for nanoelectronics, nanosensors, electrodes for energy storage and harvesting devices, composites, and weaving yarns. Carbon nanotubes covered with amorphous carbon can be efficientl
Autor:
M. V. Terenina, R. P. Matsukevich, F. N. Putilin, Yu. S. Kardasheva, D. N. Gorbunov, Karakhanov Eduard A, M. V. Nenasheva, A. L. Maksimov
Publikováno v:
Petroleum Chemistry. 59:1009-1016
The feature of hydroformylation of model gas mixtures with different ethylene, hydrogen, and methane concentrations in the presence of rhodium catalysts have been studied. The effect of the initial pressure in the reactor and the reaction temperature
Autor:
Marina Rumyantseva, Olga D. Khramova, E. A. Cherebylo, V. F. Kozlovskii, S. F. Marenkin, A. D. Izotov, F. N. Putilin, A. A. Lotin, I. A. Petukhov, Vladimir Ivanov, V. A. Mikhalevskii, L. S. Parshina, Oleg Alexeyevic Novodvorsky
Publikováno v:
Inorganic Materials. 53:1120-1125
Thin cadmium sulfide films grown by pulsed laser deposition on crystalline and amorphous substrates have been shown to consist of a mixture of a cubic (sphalerite structure) and a hexagonal (wurtzite structure) phase. We have demonstrated the possibi
Autor:
F. N. Putilin, Olga D. Khramova, Kirill D. Shcherbachev, A. A. Lotin, I. A. Petukhov, Oleg Alexeyevic Novodvorsky, L. S. Parshina
Publikováno v:
Semiconductors. 51:407-411
SnO2:Sb thin films are grown by pulsed laser deposition with high-speed particle separation on quartz-glass substrates without post-deposition annealing under different deposition conditions in the range of the energy densities on the target from 3.4
Publikováno v:
Bulletin of the Russian Academy of Sciences: Physics. 80:387-392
Nanoparticles of palladium and its oxides are synthesized on carbonic materials via the laser ablation and deposition of metals in electric fields. Studies of the materials show it is possible to control the crystallinity, size, and chemical state of
Autor:
Karakhanov Eduard A, I. A. Aksenov, A. N. Shatokhin, S. V. Kardashev, F. F. Guliev, A. L. Maksimov, F. N. Putilin
Publikováno v:
Petroleum Chemistry. 55:542-548
Palladium catalysts have been synthesized by electric field-assisted laser ablation at varying orifice voltage. The catalysts have been characterized by XPS and TEM and tested in the hydrogenation of isoprene and 2,5-dimethylhexadiene-2,4. High catal
Autor:
Dmitry Zuev, Vladimir Ivanov, A. M. Gas’kov, F. N. Putilin, A. N. Shatokhin, Olga D. Khramova, A. A. Lotin, I. A. Petukhov, V. F. Kozlovskii, L. S. Parshina, Konstantin I. Maslakov, Oleg Alexeyevic Novodvorsky, Marina Rumyantseva
Publikováno v:
Inorganic Materials. 49:1123-1126
Thin SnO2 films grown by pulsed laser deposition have been characterized by X-ray diffraction, optical spectroscopy, and scanning electron microscopy. The carrier mobility and concentration in the films have been determined as functions of target com
Autor:
I. A. Petukhov, Alexander Gaskov, F. N. Putilin, A.A. Zhukova, Marina Rumyantseva, A. N. Shatokhin
Publikováno v:
Inorganic Materials. 49:1005-1010
Antimony-doped tin dioxide whiskers have been prepared by vapor growth in a tube furnace in a flowing mixture of argon and oxygen at a constant evaporation temperature. The antimony concentration was measured by laser mass spectrometry. Palladium was