Zobrazeno 1 - 10
of 41
pro vyhledávání: '"R. Zeipl"'
Publikováno v:
Journal of Electronic Materials. 45:1921-1926
We report on the preparation of thermoelectric layers of FeSb2Te and Ce0.1Fe0.7Co3.3Sb12 on silicon (100) and fused silica substrates via a combination of pulsed laser deposition (PLD) and rapid thermal annealing methods. A wide range of deposition c
Publikováno v:
Journal of Materials Science and Chemical Engineering. :52-64
Thermoelectric layers as Bi2Te3, Yb0.19Co4Sb12, FeSb2Te, Ce0.1Fe0.7Co3.3Sb12 and FeSb2Te/Ce0.1Fe0.7Co3.3Sb12 multilayers were prepared by Pulsed Laser Deposition (PLD). Smooth, nano-crystalline, stoichiometric layers were synthetized in a classical P
Publikováno v:
Journal of Electronic Materials. 45:1734-1739
We present the development and results of a new simple method for thermal conductivity characterization of thin films and thermoelectric structures using a scanning thermal microscope in pulsed current mode. The presented method does not allow measur
Publikováno v:
Applied Mechanics and Materials. 749:46-50
Thin films of Yb filled CoSb3 were prepared on fused silica substrates using pulsed laser deposition method. The stoichiometric Yb0.19Co4Sb12 target was prepared by hot pressing method. The deposition conditions were changed with the goal to reach la
Autor:
J. Vaniš, Tomáš Kocourek, J. Walachová, Miroslav Jelinek, S. Leshkov, R. Zeipl, Jiří Navrátil, Filip Sroubek
Publikováno v:
Thin Solid Films. 548:590-596
Multi-layered Ce0.09Fe0.67Co3.33Sb12/FeSb2.1Te structures composed of thin equidistant layers of different thickness were prepared by pulsed laser deposition on fused silica quartz glass substrates. The structures were prepared at substrate temperatu
Publikováno v:
Journal of Computer and Communications. :1-4
Thermoelectric properties of Ce0.09Fe0.67Co3.33Sb12/FeSb2.1Te multi-layered structures with period of 5 nm were studied in temperature ranging from 300 K to 500 K. Structures were prepared by Pulsed Laser Deposition (PLD) on fused sili- ca quartz gla
Publikováno v:
Applied Physics A. 122
Thermal conductivity of thermoelectric $$\hbox {Bi}_{2}\hbox {Te}_{3}$$ and $$\hbox {Yb}_{0.19}\hbox {Co}_{4}\hbox {Sb}_{12}$$ thin nanolayers of different thicknesses prepared by pulsed laser deposition on Si (100) substrates was studied by a scanni
Publikováno v:
Applied Physics A. 122
Filled thermoelectric Yb x Co4Sb12 layers were prepared by pulsed laser deposition method. The Yb0.19Co4Sb12 target was fabricated by hot pressing. Various deposition conditions were tested: target—substrate distance d T–S (4 or 6 cm), ambient ar
Autor:
Karel Jurek, R. Zeipl, Sergey Leshkov, J. Walachová, Jiří Navrátil, Ludvík Beneš, Miroslav Jelinek, Monika Josieková, T. Plecháček, Jan Lorinčík, Tomáš Kocourek
Publikováno v:
Journal of Vacuum Science & Technology A: Vacuum, Surfaces, and Films. 28:523-527
The properties of thin thermoelectric layers (about 60 nm in thickness) prepared by pulsed laser deposition are presented. Hot pressed targets were made from “middle” temperature range thermoelectric bulk materials with the potential high figure
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