Zobrazeno 1 - 10
of 85
pro vyhledávání: '"V. Studnička"'
Autor:
Elena Buixaderas, Tomáš Kocourek, Jan Drahokoupil, M. Tyunina, Jan Remsa, V. Studnička, Miroslav Jelinek, Jan Petzelt, Zdeněk Tolde, Přemysl Vaněk
Publikováno v:
Materials Science and Engineering: C. 70:334-339
BaTiO3 (BTO) layers were deposited by pulsed laser deposition (PLD) on TiNb, Pt/TiNb, Si (100), and fused silica substrates using various deposition conditions. Polycrystalline BTO with sizes of crystallites in the range from 90nm to 160nm was obtain
Publikováno v:
NATO Science for Peace and Security Series B: Physics and Biophysics ISBN: 9789402412970
The synthesis of BaTiO3 thin films for gas detectors was studied. Thin layers of BaTiO3 (BTO) were deposited by pulsed laser deposition (PLD) on fused silica and Si (100) substrates using various deposition conditions from a sintered BaTiO3 target. T
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_________::e12f4fc6024f3604df367d5103acdb14
https://doi.org/10.1007/978-94-024-1298-7_2
https://doi.org/10.1007/978-94-024-1298-7_2
Autor:
Jaroslav Bruncko, Tomáš Kocourek, Miroslav Jelinek, Andrej Vincze, Vladimír Havránek, K. Rubešová, Jan Remsa, V. Studnička
Publikováno v:
Applied Physics A. 110:883-888
LiNbO3 films were deposited by PLD from LiNbO3 crystalline or from three different stoichiometric or Li-enriched LiNbO3 targets. Polycrystalline films were prepared on SiO2/Si or sapphire substrates at temperatures T S ∼650–750 °C. Main attentio
Autor:
Jan Petzelt, Maxim Savinov, Přemysl Vaněk, V. Studnička, Viktor Bovtun, Wilfried Schranz, Martin Kempa, Radmila Krupková, Ivan Gregora, Josef Buršík, I Mihail Samoylovich, Dmitry Nuzhnyy
Publikováno v:
Processing and Application of Ceramics, Vol 4, Iss 3, Pp 215-223 (2010)
Using the sol-gel technique, BaTiO3 was embedded into nanoporous Vycor and artificial vitreous opal silica for the first time. About 50 vol% of the pores was filled. In case of the Vycor glass (pore diameter 4-6 nm) only amorphous phase was revealed
Publikováno v:
Applied Physics A. 93:663-667
Room temperature conductivity and the Seebeck coefficient of thin layers prepared by laser ablation from Bi2Te3 target were explored. The power factor was calculated for samples prepared at substrate temperature of 360°C with the density of the lase
Autor:
A. Santoni, Vladimír Vorlíček, Tomáš Kocourek, M. Čerňanský, V. Studnička, Frantisek Uherek, Jaromír Kadlec, P. Boháč, Miroslav Jelinek
Publikováno v:
Thin Solid Films. :101-105
Titanium–carbide films were grown using a magnetron assisted pulse laser deposition combining KrF pulsed laser deposition and DC magnetron sputtering (PLDMS). Plasma streams produced by magnetron and laser ablation were intersected on the substrate
Publikováno v:
Surface and Coatings Technology. 200:708-711
We prepared nanostructured coatings composed of diamond-like carbon (DLC), titanium and titanium carbide using a new hybrid technique combining pulsed laser deposition (PLD) with magnetron sputtering. The whole deposition process was fully computer c
Publikováno v:
Journal of Alloys and Compounds. 387:193-200
In the present paper, microstructure, phase composition and elevated temperature behaviour of two rapidly solidified (RS) AlCr6Fe2Ti(0–1.5)Si1 (in wt.%) powder alloys are described. Rapidly solidified powders were composed of α(Al) solid solution
Publikováno v:
Laser Physics Letters. 1:248-252
Thin YAG (Y3Al5O12) and YAP (YAlO3) films doped with Er content were grown by sub-picosecond (450 fs) KrF laser deposition from crystalline Er: YAG and Er: YAP laser rods. The influence of laser power density, substrate temperature, target- substrate
Autor:
Ján Lančok, Jindřich Chval, V. Studnička, Christos Grivas, Costas Fotakis, Miroslav Jelinek, Anna Macková, A. Klini
Publikováno v:
Applied Surface Science. :416-420
Thin films of Er:YAG and Er:YAP were deposited by subpicosecond (450 fs) and nanosecond (20 ns) KrF laser (λ=248 nm) on YAG, YAP, fused silica, silicon and sapphire substrates. Laser spot size, energy density, substrate temperature and deposition am