P
Peter Kopčanský
Researcher at Slovak Academy of Sciences
Publications - 244
Citations - 2411
Peter Kopčanský is an academic researcher from Slovak Academy of Sciences. The author has contributed to research in topics: Magnetic nanoparticles & Liquid crystal. The author has an hindex of 23, co-authored 220 publications receiving 2085 citations.
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Preparation and characterization of albumin containing magnetic fluid as potential drug for amyloid diseases treatment
Martina Koneracka,Andrea Antosova,Vlasta Zavisova,Zuzana Gažová,G. Lancz,Alena Juríková,Natália Tomašovčová,Jozef Kováč,Martin Fabián,Peter Kopčanský +9 more
TL;DR: In this article, the effect of magnetic particles covered by BSA on the amyloid aggregation of the hen egg white lysozyme was investigated using transmission electron microscopy (TEM), photon cross correlation spectroscopy (PCCS) and SQUID magnetometer.
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Crystal structure, ion transport and optical properties of new high-conductivity Ag7(Si1 − xGex)S5I solid solutions
A.I. Pogodin,I. P. Studenyak,Iryna Shender,M.M. Pop,M.J. Filep,T.O. Malakhovska,O.P. Kokhan,Peter Kopčanský,T. Babuka +8 more
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Effect of superionic nanoparticles on structural changes and electro-optical behavior in nematic liquid crystal
TL;DR: In this article, two different techniques are used to investigate the behavior of liquid crystals doped with low concentrations of superionic nanoparticles Cu6PS5Br under an electric field, and the effectivity of each measurement, relying on suspension stability as well as switching times are evaluated.
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Crystal structure and electrical properties of Ag6PS5I single crystal
Ihor Studenyak,A.I. Pogodin,M.J. Filep,O.P. Kokhan,O.I. Symkanych,Milan Timko,Peter Kopčanský +6 more
TL;DR: In this paper, a single crystal of quaternary halogen Ag6PS5I was grown from the solution-melt by means of a vertical zone crystallization method and the crystal structure was ascertained using the Rietveld method.
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Magnetic fluid droplet deformation in electrostatic field
Roman Cimbala,Juraj Kurimský,M. Rajňák,K. Paulovičová,Milan Timko,Peter Kopčanský,Michal Kolcun,Michal Kosterec,Samuel Bucko,Mária Kurimská +9 more
TL;DR: In this article, the stability of the ferrofluid (FF) subjected to the electric field is crucial for the application in high voltage (HV) technology, and it is observed that the further deformation development depends on aggregates shape and location.