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gas aggregation sources
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prof. Ing. Andrey Shukurov Ph.D.
Academic staff at Faculty of Mathematics and Physics
6 classes
188 publications
Classes
class
Fundamentals of Polymer Structure Formation
NBCM060 |
Faculty of Mathematics and Physics
class
Seminar on Polymer Physics
NBCM091 |
Faculty of Mathematics and Physics
class
Physics of Thin Film Preparation
NBCM213 |
Faculty of Mathematics and Physics
class
Modification of Surfaces and Its Applications
NBCM215 |
Faculty of Mathematics and Physics
class
Selected Problems in Physics of Real Surfaces
NBCM219 |
Faculty of Mathematics and Physics
class
Analysis Methods of Surfaces and Thin Layers
NBCM233 |
Faculty of Mathematics and Physics
Publications
publication
Characterization of nanoparticle flow produced by gas aggregation source
2013 |
Faculty of Mathematics and Physics
publication
Nanocomposite Films with Plasma Polymer Matrix Prepared Using a Gas Aggregation Cluster Source
2013 |
Faculty of Mathematics and Physics
publication
Alternative Methods for Deposition of Superhydrophobic Fluorocarbon Coatings
2012 |
Faculty of Mathematics and Physics
publication
Nanorough Surfaces Prepared Using Gas Aggregation Cluster Sources
2012 |
Faculty of Mathematics and Physics
publication
Silver and Aluminium Nanocluster Films Prepared Using Simple Gas Aggregation Source
2010 |
Faculty of Mathematics and Physics
publication
HV nanocluster source based on 2 inch magnetron
Publication without faculty affiliation
publication
Plasmonic Ag/Cu/PEG nanofluids prepared when solids meet liquids in the gas phase
2023 |
Faculty of Mathematics and Physics
publication
Tuning the morphology of sputter-deposited platinum catalyst: From compact layers to dispersed nanoparticles
2023 |
Faculty of Mathematics and Physics
publication
A multi-timescale model predicts the spherical-to-cubic morphology crossover of magnetron-sputtered niobium nanoparticles
2023 |
Faculty of Mathematics and Physics
publication
Cu/Ag bimetallic nanoparticles produced by cylindrical post-magnetron gas aggregation source - A novel galvanic corrosion-based antibacterial material
2023 |
Faculty of Mathematics and Physics
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