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Slobodan D. Petrović

Researcher at Oregon Institute of Technology

Publications -  166
Citations -  2093

Slobodan D. Petrović is an academic researcher from Oregon Institute of Technology. The author has contributed to research in topics: Cyclic voltammetry & Hydrogen bond. The author has an hindex of 22, co-authored 165 publications receiving 1774 citations. Previous affiliations of Slobodan D. Petrović include University of Belgrade & University of Novi Sad.

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Supercritical carbon dioxide extraction of antioxidant fractions from selected Lamiaceae herbs and their antioxidant capacity

TL;DR: In this article, the authors used HPLC-DAD/ESI-ToF-MS to characterize the antioxidant activity of extracts from four herb species belonging to the Lamiaceae family.
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Effect of inorganic ions, photosensitisers and scavengers on the photocatalytic degradation of nicosulfuron

TL;DR: In this paper, the photocatalytic degradation of nicosulfuron, using TiO 2 as a catalyst under UV light (315-400nm), was studied, and the optimal concentration of the catalyst was found to be 1 ǫ g l − 1 at concentration of n-sulfuron solution of 20 Ã l −1 while the highest reaction rate was obtained using 2 Ã g l−1.
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A study of the photocatalytic degradation of metamitron in ZnO water suspensions

TL;DR: In this article, the photocatalytic degradation of the herbicide metamitron in water using ZnO under Osram ULTRA-VITALUX® lamp light was studied.
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Antioxidant properties of the anthocyanin-containing ultrasonic extract from blackberry cultivar “Čačanska Bestrna”

TL;DR: In this paper, an ultrasound-assisted extraction was used to investigate isolation of anthocyanin-containing extracts from the blackberry cultivar “Cacanska Bestrna” widely grown in Serbia.
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LaMO3 (M = Mg, Ti, Fe) perovskite type oxides: Preparation, characterization and catalytic properties in methane deep oxidation

TL;DR: In this paper, two perovskite-type oxides LaMO3 (Mg, Ti, Fe) with different ratio Mg/Fe (MF) and Ti/Fe(TF) in the B cation site were prepared by annealing the precursor, obtained by the mechanochemical activation (MCA) of constituent metal oxides, at 1000°C in air.