Informace o projektu
CEITEC Nano
- Kód projektu
- LM2015041
- Období řešení
- 1/2016 - 12/2019
- Investor / Programový rámec / typ projektu
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Ministerstvo školství, mládeže a tělovýchovy ČR
- Velké infrastruktury pro výzkum, vývoj a inovace
- Fakulta / Pracoviště MU
- Středoevropský technologický institut
- Spolupracující organizace
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Vysoké učení technické v Brně
- Odpovědná osoba David Škoda, Ph.D.
The research infrastructure (hereinafter RI) CEITEC Nano provides complex conditions for the experimental research in the field of nanotechnology and nanoscience. It has been operated as a single-sited national research infrastructure “under construction” since 2012. The fully operational state of the RI is expected in 2016 when a new complex of laboratories at the Brno University of Technology Campus "Pod Palackého vrchem" will be completed and equipped with all the planned CEITEC instruments.
The RI is designed to provide access of users to fully equiped, mostly clean-room facilities for preparation and characterization of functional nanostructures and advanced materials finding their application especially in the fields of nanoelectronics, nanophotonics, energy harvesting, biosensing and biomedicine.
The RI infrastructure is quite unique in the Czech Republic and other Central European countries (e.g. Poland, Hungary and Slovakia) in terms of the completeness of the available tools and methods for nanotechnology research, and open access- and user’s “self surface” policy. It has been primarily designed as an open RI providing access to the infrastructure to internal (research teams of CEITEC) and external users (both from academia and industry) based on the first-come-first-served principle. Almost all instruments available in the RI will be directly operated by the users, thus increasing the utilization of its equipment.
Thanks to its modern design, emphasizing equal approach to fabrication and characterization methods, the RI CEITEC Nano will also provide complementary services to nanotechnology RIs abroad, where in many cases nanofabrication instruments as a rule prevail to the nanocharacterization ones. It has already become a member of the consortium “Integrating European Infrastructures for Micro-Nano Fabrications”, called EUMINAfab II, coordinated by the Karlsruhe Institute of Technology (KIT).
It is obvious, the RI will be used as a natural instrumental base for practical training and education of students.
Publikace
Počet publikací: 38
2019
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Biphasic calcium phosphate scaffolds with controlled pore size distribution prepared by in-situ foaming
MATERIALS SCIENCE & ENGINEERING C-MATERIALS FOR BIOLOGICAL APPLICATIONS, rok: 2019, ročník: 95, vydání: FEB 1 2019, DOI
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Effects of additives on atmospheric pressure gliding arc applied to the modification of polypropylene
Surface & coatings technology, rok: 2019, ročník: 2019, vydání: 372, DOI
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Ellipsometry, reflectance, and photoluminescence of nanocrystalline CuCl thin films on silicon
JOURNAL OF VACUUM SCIENCE & TECHNOLOGY B, rok: 2019, ročník: 37, vydání: 5, DOI
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Enhanced permeability dielectric thin films with tailored properties deposited by magnetron sputtering on silicon
AIP Advances, rok: 2019, ročník: 9, vydání: 3, DOI
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Homogeneity and Penetration Depth of Atmospheric Pressure Plasma Polymerization onto Electrospun Nanofibrous Mats
Applied Surface Science, rok: 2019, ročník: 471, vydání: March, DOI
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Characterization of nanoblisters on HOPG surface
Journal of Electrical Engineering, rok: 2019, ročník: 70, vydání: 7, DOI
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Characterization of the native oxide on CdTe surfaces
Materials Science-Poland, rok: 2019, ročník: 37, vydání: 2, DOI
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Interaction of selenite with metallothionein studied by Brdicka reaction
Monatshefte fur Chemie-Chemical Monthly, rok: 2019, ročník: 150, vydání: 3, DOI
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Large magnetic gap at the Dirac point in Bi2Te3/MnBi2Te4 heterostructures
Nature, rok: 2019, ročník: 576, vydání: 7787, DOI
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Microstructural changes of amorphous Mo–B–C coatings upon thermal annealing
Surface & coatings technology, rok: 2019, ročník: 379, vydání: DEC 15 2019, DOI