Project information
Rozvoj centra pro nízkonákladové plazmové a nanotechnologické povrchové úpravy
(CEPLANT plus)
- Project Identification
- LO1411
- Project Period
- 1/2015 - 12/2019
- Investor / Pogramme / Project type
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Ministry of Education, Youth and Sports of the CR
- National Feasibility Programme I
- MU Faculty or unit
- Faculty of Science
Projekt Rozvoj centra pro nízkonákladové plazmové a nanotechnologické povrchové úpravy slouží k podpoře udržitelnosti a dalšímu rozvoji centra CEPLANT vybudovaného v rámci OP VaVpI. Projekt bude zaměřen zejména na základní výzkum, který je nezbytným východiskem pro kvalitní aplikovaný výzkum v oblasti plazmových technologii.
Publications
Total number of publications: 516
2019
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DIAGNOSTICS OF PLASMA PENCIL DISCHARGE FOR CHEMICAL ANALYSIS
23rd Symposium on Physics of Switching Arc 2019, year: 2019
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Different types of HiPIMS discharges: a comparative study via time-resolved particle imaging
Year: 2019, type: Article in Periodical (without peer review)
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Effect of atmospheric pressure plasma on surface modification of paper
AIP Advances, year: 2019, volume: 9, edition: 10, DOI
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Effect of bonding structure on hardness and fracture resistance of W-B-C coatings with varying B/W ratio
Surface & coatings technology, year: 2019, volume: 358, edition: January, DOI
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EFFECT OF CERAMIC ADDITIVES ON HYDROPHOBIC LAYER ELECTRODEPOSITION
Year: 2019, type: Conference abstract
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Effect of DCSBD plasma treatment distance on thermally modified beech
Year: 2019, type: Conference abstract
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Effect of DCSBD plasma treatment on surface properties of thermally modified wood
Surface and Interfaces, year: 2019, volume: 16, edition: SEP 2019, DOI
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Efficiency of Ozone Production in Coplanar Dielectric Barrier Discharge
Plasma Chemistry and Plasma Processing, year: 2019, volume: 39, edition: 5, DOI
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Efficient method to calculate the optical quantities of multi-layer systems with randomly rough boundaries using the Rayleigh Rice theory
Physica Scripta, year: 2019, volume: 94, edition: 4, DOI
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Electrical analysis and ultra-fast sequential imaging of surface barrier discharge with streamer-leader sequence generated with 100 kHz frequency at the water interface
PLASMA SOURCES SCIENCE & TECHNOLOGY, year: 2019, volume: 28, edition: 9, DOI