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Dive into the research topics where Erika Turianicová is active.

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Featured researches published by Erika Turianicová.


International Journal of Pharmaceutics | 2015

Stability studies of As4S4 nanosuspension prepared by wet milling in Poloxamer 407

Zdenka Bujňáková; Erika Dutková; Matej Baláž; Erika Turianicová; Peter Baláž

In this paper the stability of the arsenic sulfide (As4S4) nanosuspension prepared by wet milling in a circulation mill in the environment of copolymer Poloxamer 407 was studied. The obtained As4S4 particles in nanosuspension were of ∼ 100 nm in size. The influence of temperature and UV irradiation on the changes in physical and/or chemical properties was followed. Long-term stability was observed via particle size distribution and zeta potential measurements. Influence of UV irradiation was studied via UV-vis spectroscopy (UV-vis), photoluminicsence (PL) technique and Fourier transform infrared spectroscopy (FTIR) measurements. The best stability of the nanosuspension (24 weeks) was achieved when stored at 4°C and in the dark.


Materials Science and Engineering: C | 2017

Preparation, properties and anticancer effects of mixed As4S4/ZnS nanoparticles capped by Poloxamer 407

Zdenka Bujňáková; Matej Baláž; M. Zdurienčíková; Sedlák J; Mária Čaplovičová; Ľ. Čaplovič; Erika Dutková; Anna Zorkovská; Erika Turianicová; Peter Baláž; O. Shpotyuk; S. Andrejko

Arsenic sulfide compounds have a long history of application in a traditional medicine. In recent years, realgar has been studied as a promising drug in cancer treatment. In this study, the arsenic sulfide (As4S4) nanoparticles combined with zinc sulfide (ZnS) ones in different molar ratio have been prepared by a simple mechanochemical route in a planetary mill. The successful synthesis and structural properties were confirmed and followed via X-ray diffraction and high-resolution transmission electron microscopy measurements. The morphology of the particles was studied via scanning electron microscopy and transmission electron microscopy methods and the presence of nanocrystallites was verified. For biological tests, the prepared As4S4/ZnS nanoparticles were further milled in a circulation mill in a water solution of Poloxamer 407 (0.5wt%), in order to cover the particles with this biocompatible copolymer and to obtain stable nanosuspensions with unimodal distribution. The average size of the particles in the nanosuspensions (~120nm) was determined by photon cross-correlation spectroscopy method. Stability of the nanosuspensions was determined via particle size distribution and zeta potential measurements, confirming no physico-chemical changes for several months. Interestingly, with the increasing amount of ZnS in the sample, the stability was improved. The anti-cancer effects were tested on two melanoma cell lines, A375 and Bowes, with promising results, confirming increased efficiency of the samples containing both As4S4 and ZnS nanocrystals.


GeoScience Engineering | 2015

CO2 UTILIZATION FOR MECHANOCHEMICAL CARBONATION OF CELESTINE

Erika Turianicová

Abstract Natural celestine (SrSO4) has been succesfully transformed into strontianite (SrCO3) via fast one-step mechanochemical carbonation utilizing gaseous CO2. The process was realized in the environment enriched with LiOH or NaOH additives. The mixtures were milled in a high-energy planetary ball mill for 40 min. The phases formed during the milling were characterized by different characterization techniques, such as X-ray diffraction (XRD) and infrared spectroscopy (FT-IR). The presence or absence of carbon or sulphur in the products was confirmed by a CHNS analysis.


International Journal of Mineral Processing | 2008

Structural changes in olivine (Mg, Fe)2SiO4 mechanically activated in high-energy mills

Peter Baláž; Erika Turianicová; Martin Fabián; Rolf Arne Kleiv; Jaroslav Briančin; Abdullah Obut


Journal of Materials Science | 2015

Arsenic sulfide nanoparticles prepared by milling: properties, free-volume characterization, and anti-cancer effects

Zdenka Bujňáková; Peter Baláž; Petre Makreski; Gligor Jovanovski; Mária Čaplovičová; Ľubomír Čaplovič; O. Shpotyuk; A. Ingram; Te-Chang Lee; Jing-Jy Cheng; Sedlák J; Erika Turianicová; Anna Zorkovská


Minerals Engineering | 2010

The influence of attrition milling on carbon dioxide sequestration on magnesium–iron silicate

Martin Fabián; Maya Shopska; Daniela Paneva; G. Kadinov; Nina G. Kostova; Erika Turianicová; Jaroslav Briančin; Ivan Mitov; Rolf Arne Kleiv; Peter Baláž


International Journal of Mineral Processing | 2013

A comparison of the reactivity of activated and non-activated olivine with CO2

Erika Turianicová; Peter Baláž; Ľubomír Tuček; Anna Zorkovská; Vladimír Zeleňák; Zoltán Németh; Alexander Satka; Jaroslav Kováč


Physica Status Solidi (c) | 2008

Mechanochemistry in preparation of nanocrystalline semiconductors

Peter Baláž; Parviz Pourghahramani; Erika Dutková; Erika Turianicová; Jaroslav Kováč; Alexander Satka


Journal of Solid State Electrochemistry | 2016

Electrochemical properties of spinel Li4Ti5O12 nanoparticles prepared via a low-temperature solid route

Mamoru Senna; Martin Fabián; Ladislav Kavan; Marketa Zukalova; Jaroslav Briančin; Erika Turianicová; Patrick Bottke; Martin Wilkening; Vladimir Šepelák


Minerals Engineering | 2013

The effects of LiOH and NaOH on the carbonation of SrSO4 by dry high-energy milling

Erika Turianicová; Abdullah Obut; Anna Zorkovská; Peter Baláž; Marek Matik; Jaroslav Briančin

Collaboration


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Peter Baláž

Slovak Academy of Sciences

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Anna Zorkovská

Slovak Academy of Sciences

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Erika Dutková

Slovak Academy of Sciences

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Matej Baláž

Slovak Academy of Sciences

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Sedlák J

Slovak Academy of Sciences

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O. Shpotyuk

Jan Długosz University

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Martin Fabián

Slovak Academy of Sciences

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