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Lecturer(s)
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Brázda Michal, Mgr.
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Lisníková Soňa, Mgr. Ph.D.
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Kalusová Karolína, Mgr.
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Kořenek Michal, Mgr.
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Ostruszka Radek, Mgr. Ph.D.
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Kopp Josef, Mgr. Ph.D.
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Heger Vítězslav, Mgr.
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Course content
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1. Scanning electron microscopy 2. EDS analysis 3. Preparation of thin layers 4. Electron beam lithography 5. Synthesis of nanomaterials via thermally induced decomposition 6. Wet-synthesis of Ag/Au nanoparticles and nanoclusters 7. Preparation of carbon nanostructures via CVD 8. Synthesis of nZVI
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Learning activities and teaching methods
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Laboratory Work
- Attendace
- 40 hours per semester
- Homework for Teaching
- 40 hours per semester
- Preparation for the Exam
- 10 hours per semester
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Learning outcomes
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Upon completion of the course, students will gain fundamental practical experience with selected experimental techniques used in the characterization of nanostructures, as well as in the preparation of basic nanostructures.
practical experience with characterization of nanomaterials practical experience with preparation of nanomaterials
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Prerequisites
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" KEF/ZANA1 " KEF/ZANA2 " KEF/MRSA or KEF/MMM
KEF/ZANA1
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Assessment methods and criteria
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Student performance
100 % attendance home preparation reports oral exam
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Recommended literature
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Návody k úlohám.
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VEGA 3 SEM Instructions for Use. 2011.
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Karolína Šišková, Jiří Tuček, Libor Machala, Eva Otyepková, Jan Filip, Klára Šafářová, Jiří Pechoušek, Radek Zbořil. Air-stable nZVI formation mediated by glutamic acid: solid-state storable material exhibiting 2D chain morphology and high reactivity in aqueous environment. 2012.
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