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DEPARTMENT OF PHYSICAL CHEMISTRY AND MATERIALS SCIENCE
Web page http://www2.sci.u-szeged.hu/physchem/home.html
Head of Deparment Tóth Ágota, Dr.
Email
Address 6720 Szeged, Aradi vértanúk tere 1.
PROJECTS
Name Discipline Research Topic Tags Level
2-D and 3-D aggregation of natural amphiphiles: BANAMOCA Chemistry ET Aqueous Colloids Research Group nanoparticles, magnetic iron oxides, aqueous colloids, colloidal stability, pH dependent surface charging, surface charge titration, zeta potential, dynamic light scattering, rheology, magnetic hyperthermia, magnetic separation Knowledge improvement (theoretical research)
Biológiailag aktív vegyületek rögzítése vezető polimerekben Chemistry Dr. Visy Csaba's topic Knowledge improvement (theoretical research)
Colloidal aggregtion of soils and soil constituent particles Chemistry ET Aqueous Colloids Research Group nanoparticles, magnetic iron oxides, aqueous colloids, colloidal stability, pH dependent surface charging, surface charge titration, zeta potential, dynamic light scattering, rheology, magnetic hyperthermia, magnetic separation Knowledge improvement (theoretical research)
Designing and assembling hybrid materials to be simultaneously applied as both absorber and cathode-material in PEC CO2 conversion Chemistry, Physics „Momentum” Photoelectrochemistry Research Group Knowledge improvement (theoretical research)
Elektromosságot vezető szerves polimerek előállítása és tulajdonságai Chemistry Dr. Visy Csaba's topic Knowledge improvement (theoretical research)
Elektronvezető polimerek mágneses nanokompozitjai Chemistry Dr. Visy Csaba's topic Knowledge improvement (theoretical research)
Examination of Nanodispersions, Self-organizing Films and Biocomposite Materials Chemistry, Physics Colloids and Nanostructured Materials Research Group Knowledge improvement (theoretical research)
Fotoaktív vezetőpolimer kompozitok Chemistry Dr. Visy Csaba's topic Knowledge improvement (theoretical research)
Magnetooptical materials: magnetic nanoparticles for magneto-optical thin film Chemistry ET Aqueous Colloids Research Group nanoparticles, magnetic iron oxides, aqueous colloids, colloidal stability, pH dependent surface charging, surface charge titration, zeta potential, dynamic light scattering, rheology, magnetic hyperthermia, magnetic separation Knowledge improvement (theoretical research)
Polimer-szén nanocső kompozitok kialakítása és elektrokémiai alkalmazása Chemistry Dr. Szűcs Árpád's topic Knowledge improvement (theoretical research)
Termoelektromos tulajdonságú polimer hibridek előállítása Chemistry Dr. Visy Csaba's topic Knowledge improvement (theoretical research)
Theranostic Nanoparticles: Magnetoresponsive iron oxide nanoparticles for biomedical use Chemistry ET Aqueous Colloids Research Group nanoparticles, magnetic iron oxides, aqueous colloids, colloidal stability, pH dependent surface charging, surface charge titration, zeta potential, dynamic light scattering, rheology, magnetic hyperthermia, magnetic separation Knowledge improvement (theoretical research)
pH-dependent surface charge characterization Chemistry ET Aqueous Colloids Research Group nanoparticles, magnetic iron oxides, aqueous colloids, colloidal stability, pH dependent surface charging, surface charge titration, zeta potential, dynamic light scattering, rheology, magnetic hyperthermia, magnetic separation Knowledge improvement (theoretical research)
PRODUCTS
Name Discipline Research Topic Tags
Characterization: of interfacial equilibria and colloidal interactions Chemistry ET Aqueous Colloids Research Group nanoparticles, magnetic iron oxides, aqueous colloids, colloidal stability, pH dependent surface charging, surface charge titration, zeta potential, dynamic light scattering, rheology, magnetic hyperthermia, magnetic separation
Materials synthesis: synthesis of nanoparticles Chemistry ET Aqueous Colloids Research Group nanoparticles, magnetic iron oxides, aqueous colloids, colloidal stability, pH dependent surface charging, surface charge titration, zeta potential, dynamic light scattering, rheology, magnetic hyperthermia, magnetic separation
Surface modification: design and implementation of organic shell on core Chemistry ET Aqueous Colloids Research Group nanoparticles, magnetic iron oxides, aqueous colloids, colloidal stability, pH dependent surface charging, surface charge titration, zeta potential, dynamic light scattering, rheology, magnetic hyperthermia, magnetic separation
INSTRUMENTS
Name Discipline Research Topic Tags
AlphaLab DC Magnetometer, GM2 Chemistry, Environmental studies magnetic field, Gauss
GIMET1 home-built potentiometric acid-base titration system Chemistry ET Aqueous Colloids Research Group nanoparticles, magnetic iron oxides, aqueous colloids, colloidal stability, pH dependent surface charging, surface charge titration, zeta potential, dynamic light scattering, rheology, magnetic hyperthermia, magnetic separation
Haake RS 150 rheometer Chemistry ET Aqueous Colloids Research Group nanoparticles, magnetic iron oxides, aqueous colloids, colloidal stability, pH dependent surface charging, surface charge titration, zeta potential, dynamic light scattering, rheology, magnetic hyperthermia, magnetic separation
Magnetherm 1.5 hyperthermia simulation system Chemistry ET Aqueous Colloids Research Group nanoparticles, magnetic iron oxides, aqueous colloids, colloidal stability, pH dependent surface charging, surface charge titration, zeta potential, dynamic light scattering, rheology, magnetic hyperthermia, magnetic separation
MicroThrough XL Langmuir balance Chemistry ET Aqueous Colloids Research Group nanoparticles, magnetic iron oxides, aqueous colloids, colloidal stability, pH dependent surface charging, surface charge titration, zeta potential, dynamic light scattering, rheology, magnetic hyperthermia, magnetic separation
Ocean Optics UV-VIS spectrophotometer Chemistry ET Aqueous Colloids Research Group nanoparticles, magnetic iron oxides, aqueous colloids, colloidal stability, pH dependent surface charging, surface charge titration, zeta potential, dynamic light scattering, rheology, magnetic hyperthermia, magnetic separation
PIV (Particle Image Velocimetry) system Chemistry, Environmental studies Particle, Image, Velocimetry, PIV
Radelkis pH-meter Chemistry ET Aqueous Colloids Research Group nanoparticles, magnetic iron oxides, aqueous colloids, colloidal stability, pH dependent surface charging, surface charge titration, zeta potential, dynamic light scattering, rheology, magnetic hyperthermia, magnetic separation
SPECS XPS Chemistry
Thermo Scientific Orion Star A212 Benchtop Conductivity Meter Chemistry, Environmental studies Conductivity Meter, resistance, conductivity
Zeneer Power ultrapure water Chemistry ET Aqueous Colloids Research Group nanoparticles, magnetic iron oxides, aqueous colloids, colloidal stability, pH dependent surface charging, surface charge titration, zeta potential, dynamic light scattering, rheology, magnetic hyperthermia, magnetic separation
Zetasizer4 and NanoZS Dynamic Light Scattering Electrophoresis Chemistry ET Aqueous Colloids Research Group nanoparticles, magnetic iron oxides, aqueous colloids, colloidal stability, pH dependent surface charging, surface charge titration, zeta potential, dynamic light scattering, rheology, magnetic hyperthermia, magnetic separation
MEMBERS
Name Organisation Research Topic
Illés Erzsébet, Dr. Faculty of Science and Informatics,Institute of Chemistry,Department of Physical Chemistry and Materials Science
ET Aqueous Colloids Research Group
Nesztor Dániel Faculty of Science and Informatics,Institute of Chemistry,Department of Physical Chemistry and Materials Science
ET Aqueous Colloids Research Group
Szekeres Márta, Dr. Faculty of Science and Informatics,Institute of Chemistry,Department of Physical Chemistry and Materials Science
ET Aqueous Colloids Research Group
Tombácz Etelka, Dr. Prof. Faculty of Science and Informatics,Institute of Chemistry,Department of Physical Chemistry and Materials Science
ET Aqueous Colloids Research Group
Tóth Ildikó, Dr. Faculty of Science and Informatics,Institute of Chemistry,Department of Physical Chemistry and Materials Science
ET Aqueous Colloids Research Group