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Patryk Wlodarczyk

Researcher at University of Silesia in Katowice

Publications -  81
Citations -  1801

Patryk Wlodarczyk is an academic researcher from University of Silesia in Katowice. The author has contributed to research in topics: Dielectric & Glass transition. The author has an hindex of 23, co-authored 80 publications receiving 1488 citations. Previous affiliations of Patryk Wlodarczyk include Silesian University of Technology & Silesian University.

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Broadband dielectric relaxation study at ambient and elevated pressure of molecular dynamics of pharmaceutical: indomethacin.

TL;DR: Broadband dielectric measurements on the pharmaceutical indomethacin (IMC) and the possibility of preparation of the amorphous state with higher density than by cooling of the liquid are discussed, and it is found that the fragility of IMC decreases with increasing pressure.
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Electrical conduction mechanism and dielectric properties of spherical shaped Fe3O4 nanoparticles synthesized by co-precipitation method

TL;DR: Calculated electron mobility increases with temperature, which is related to the decreasing value of hopping energy for the tunneling of small polarons, and it has been confirmed that conductivity dispersion is closely related to both the long-range mobility and the short-range Mobility.
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Dielectric and electromagnetic interference shielding properties of high entropy (Zn,Fe,Ni,Mg,Cd)Fe 2 O 4 ferrite

TL;DR: The dielectric spectroscopy confirms, that the electrical conductivity and polarization processes are associated with the mobility of electrons in the structure of ferrite and the both, high frequency complex dielectrics permittivity as well as complex magnetic permeability are strongly temperature and frequency dependent.
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Study of molecular dynamics of pharmaceutically important protic ionic liquid-verapamil hydrochloride. I. Test of thermodynamic scaling

TL;DR: In this article, the structural α-relaxation time τα as a function of temperature, pressure, and volume was examined under isobaric and isothermal conditions by using dielectric spectroscopy.
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Molecular dynamics of itraconazole at ambient and high pressure.

TL;DR: DSC measurements yielded besides melting and glass transition observed during heating and cooling of both samples two further endothermic events at around T = 363 K and T = 346 K, which indicated that extra ordering in itraconazole is likely to occur.