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Projects source: E-CRIS

Investigation of the effect of parameters of synthesis and processing on dielectric, optical and magnetic properties, both bulk and surface of crystal and polymeric systems

Research activity

Code Science Field
P250  Natural sciences and mathematics  Condensed matter: structure, thermal and mechanical properties, crystallography, phase equilibria 
P260  Natural sciences and mathematics  Condensed matter: electronic structure, electrical, magnetic and optical properties, supraconductors, magnetic resonance, relaxation, spectroscopy 
Keywords
dielectrics, single crystals, polymers, plasma treatment, modeling properties, surface science
Organisations (3) , Researchers (1)
0009  University of Belgrade, Faculty of Physics
no. Code Name and surname Research area Role Period No. of publicationsNo. of publications
1.  00936  Jablan R. Dojčilović  Physics  Head  2011 - 2019  20 
0016  University of Belgrade, Faculty of Technology and Metallurgy
0094  University of Belgrade, Vinča Institute of Nuclear Sciences - National Institute of the Republic of Serbia
Abstract
Dielectric, magnetic and optical properties of polymers, polar dielectrics, nonlinear dielectrics (laser crystals) systems will be studied by the methods of dielectric spectroscopy, using optical and magnetic measurements within broad temperature and frequency range. The influence of doping by polar and nano impurities will be studied in detailed, fastened and natural aging to the morphological, thermo-mechanical, dielectric and optical properties of high resistance non polar polymers such as polyolefin. It refers to different density polyethylene and polyamide and structure formed on their origin (filters, membrane). Tailoring of physical properties of laser crystals (YAG, Al2O3) and quantum para electrics (SrTiO3) will be conduct using doping, thermal treatment and external fields. Studying of interactions of compression plasma flows, ion beams, DC and MW plasma with surfaces of materials listed above; analyzing of influence of plasma parameter on etching/implanting processes. Analyzing of treated surface by using surface science technique. Development of appropriate methods and techniques and their applications (industries of polymers, filters, cables, medical plastics etc) are planned. The results of proposed researches are so planned to enable a bases for obtaining materials of expected properties.
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