

department of Advanced Materials
The department combines the development and analysis of (nano)materials using plasma technologies and technologies for analyzing the surface of materials. We are able to measure the tribological and mechanical properties of thin layers, coatings and substrates.

RESEARCH
The department is professionally oriented towards solving research projects focused on modifying the surfaces of metallic and non-metallic materials using thin layers created by plasma methods. The main goal of plasma treatments is to improve the useful properties of modified components. We are also engaged in the following activities:
- Creation of new types of layers and coatings suitable for specific applications.
- Creation of methodologies for measuring the properties of thin layers and coatings.
- Study of unconventional structures of materials with a high degree of functionality and search for new areas of their use.
- Application of analysis results in materials research.
- Analyses of input and output materials of advanced technologies, especially materials with thin layers, nanoparticles or nanofibers.
- Comprehensive analyses of all types of materials, including microanalysis used to determine the composition of these materials.
- Materials research focused on the development of linear and 3D nanofiber structures, composite materials and new materials containing nanoparticles.
- Professional support in solving production and technological issues in the industrial sphere.
- Implementation of educational seminars, lectures and workshops focused on the connection of science and art and the use of new materials and technologies in creative work. The target group of these activities are schools, businesses and the general public.

RESEARCH
Přehled všech služeb, které oddělení nabízí:

Advanced Materials Department Team

Publications
- Composite nanostructured ZrO2–TiO2 ceramics with pyroelectric propertiesNatalia Klochko, Oksana Borysenko, Ruslan Kryvobok, Serhii Petrushenko, Sergey Logvinov, Kinga Izabela Adach, Mateusz Piotr Fijałkowski, Sergiy Bogatyrenko, Sergei Dukarov, Volodymyr Sukhov, Nataliia Shmatko
- Effect of Ethylene Oxide Sterilization on Humic Acid Modified Gelatin-Alginate HydrogelsVira Velianyk, Kateřina Strnadová, Serhii Petrushenko, Sergei Dukarov, Volodymyr Sukhov, Natalia Klochko, Olesyna Filenko, Yurij Masikevych, Kalif Repko, Sergii Borovkov, Oleksandr Lytvynenko, Dmytro Blyzniuk, Vladimir Lebedev
- Effect of Nanodiamond Incorporation on the Surface, Mechanical, and Tribological Properties of Glass Ionomer CementMagdalena Mrózek, Pavel Kejzlar, Petr Louda, Danuta Lietz-Kijak, Piotr Skomro, Karolina Jezierska, Lidia Szczucka, Karolina Rowińska, Kinga Izabela Adach, Mateusz Piotr Fijałkowski, Totka Bakalova, Helena Gronwald
- Flexible Neuromorphic Memristor with Copper Iodide Switching LayerNatalia Klochko, Serhii Petrushenko, Mateusz Piotr Fijałkowski, Denis Fedonenko, Volodymyr Sukhov
- Growth and structural study of the solid solution Si1−xGex (0 %60 x %60 1)Serhii Petrushenko, Mateusz Piotr Fijałkowski, Malika Shonazarova, Sevara Abdellaeva

Devices
Kapacitu našich špičkových přístrojů můžete po dohodě využít i vy.
Scratch tester Bruker (cz)
doc. Ing.Stanislav Petrík, CSc.
T: +420 485 35 36 72
E: stanislav.petrik@tul.cz
Scratch test: měření přídržnosti (adheze) tenkých vrstev na podkladu
Měření tvrdosti CMS (cz)
doc. Ing.Stanislav Petrík, CSc.
T: +420 485 35 36 72
E: stanislav.petrik@tul.cz
Měření tvrdosti a dalších mechanických vlastností (Youngův modul) tenkých (submikronových) vrstev
Oxford Aztec (cz)
doc. Ing.Stanislav Petrík, CSc.
T: +420 485 35 36 72
E: stanislav.petrik@tul.cz
Součást SEMEDS System – AztecEnergy X-Max detektor Kvalitativní a kvantitativní analýza lokálního chemického složení (od Be po Pu) WDS System - INCAWave INCAWave 500 Ultra-přesná analýza lokálního chemického složení Energetický rozsah od 0,17 do 10,84 keV EBSD System - AZtecHKL HKLNordlysNano Krystalografické informace
Vakuová depoziční komora – RF PACVD/MS (cz)
doc. Ing.Stanislav Petrík, CSc.
T: +420 485 35 36 72
E: stanislav.petrik@tul.cz
Vakuová depoziční komora ve tvaru válce: vnitřní průměr 411 mm, výška 393 mm
Charpyho kladivo Zwick HIT50P (cz)
doc. Ing.Stanislav Petrík, CSc.
T: +420 485 35 36 72
E: stanislav.petrik@tul.cz
Měření rázové a vrubové houževnatosti
Vysokoteplotní tribometr Bruker (cz)
doc. Ing.Stanislav Petrík, CSc.
T: +420 485 35 36 72
E: stanislav.petrik@tul.cz
Profilometr: měření drsnosti pvrvhu a drážek po testech na tribometru a scratchtestu
Optická mikroskopie (cz)
RNDr.Alena Ševců, Ph.D.
T: +420 485 35 38 05
E: alena.sevcu@tul.cz
Carl Zeiss Axio Imager M2M, Carl Zeiss Axio Observer A1
Dip Coater (cz)
Ing.Mateusz Fijalkowski, Ph.D.
T: +420 485 35 34 75
E: mateusz.fijalkowski@tul.cz
Příprava homogenních povlaků na planárních substrátech
Chemspeed (cz)
Ing.Mateusz Fijalkowski, Ph.D.
T: +420 485 35 34 75
E: mateusz.fijalkowski@tul.cz
Robotická platforma pro chemické syntézy
Mikrovlnný reaktor (cz)
Ing.Mateusz Fijalkowski, Ph.D.
T: +420 485 35 34 75
E: mateusz.fijalkowski@tul.cz
Hydro a solvotermální syntézy podporované MW polem
UV-VIS spektroskopie (cz)
Ing.Mateusz Fijalkowski, Ph.D.
T: +420 485 35 34 75
E: mateusz.fijalkowski@tul.cz
Identifikace a strukturní charakterizace organických sloučenin a stanovení anorganických látek
Institute for Nanomaterials,
Advanced Technology and Innovation
Studentská 1402/2
office:
Bendlova 1409/7 – budova L
460 01 Liberec 1
T +420 485 353 852
M +420 725 836 913
Stay in touch
Designed with WordPress