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The aim of the subject is to introduce students to theory and practical aspects of advanced materials based on semiconductors, dielectrics and other materials with emphasis on a broad discussion focused on special materials' processing techniques, thin film preparation and their applications in electronics and tissue engineering. Students will also be introduced to a number of sophisticated analytical methods that, beyond their basic use, can be used in nanolithography and advanced surface analysis.
Last update: Slepička Petr (27.05.2018)
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Students will know:
Possibilities of surface activation, modification and techniques for the preparation of thin films on solid substrates, with focus on applications in electronics and tissue engineering.
Theoretical basics in the field of interaction of solids with energy beam (plasma, laser, ion beam) and discussion of this knowledge in connection with applications.
Description of selected analytical methods from the point of view of their use for elemental, morphological and volume analysis, advantages and disadvantages for selected types of materials and applications. Last update: Slepička Petr (27.05.2018)
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Oral exam. Last update: Slepička Petr (27.05.2018)
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R: Kasap S.O., Principles of Electronic Materials and Devices, 2003, ISBN: 0-07-239342-4
R: G.L. Hornyak a kol.: Introduction to nanoscience. Chapter 3. Characterization methods. CRC Press, 2008, ISBN 978-4200-4805-6.
A: Waser R.(Ed.): Nanoelectronics and Information Technology, 2005, ISBN-13:978-3-527-40542-8
A: Cao: Nanostructures & Nanomaterials: Synthesis, Properties & Applications, Chapter 8. Characterization and Properties of Nanomaterials, Imperial College Press, London, 2004, ISBN 1-86094-4159 Last update: Slepička Petr (24.09.2018)
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Lectures, Interactive discussions Last update: Slepička Petr (27.05.2018)
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1. Structure of materials and possibilities of their surface modification 2. Effect of laser beam, construction of periodic structures and their application 3. Semiconductors and their properties 4. Methods of preparation of semiconductor materials and their modification 5. Thin layers and their advanced applications I 6. Thin layers and their advanced applications II 7. Dielectric materials and compounds based on carbon 8. Scanning probe microscopy and their application 9. Electron microscopy and lithographic techniques 10. Methods based on ion detection (SIMS) and nuclear methods (RBS) 11. Applications in electronics and tissue engineering Last update: Slepička Petr (27.05.2018)
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https://pubs.acs.org/journal/aamick
www.journals.elsevier.com/biomaterials Last update: Slepička Petr (27.05.2018)
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