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Dive into the research topics where Konrad Trzciński is active.

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Featured researches published by Konrad Trzciński.


Nanomaterials | 2018

UV-Vis-Induced Degradation of Phenol over Magnetic Photocatalysts Modified with Pt, Pd, Cu and Au Nanoparticles

Izabela Wysocka; Ewa Kowalska; Konrad Trzciński; Marcin Łapiński; Grzegorz Nowaczyk; Anna Zielińska-Jurek

The combination of TiO2 photocatalyst and magnetic oxide nanoparticles enhances the separation and recoverable properties of nanosized TiO2 photocatalyst. Metal-modified (Me = Pd, Au, Pt, Cu) TiO2/SiO2@Fe3O4 nanocomposites were prepared by an ultrasonic-assisted sol-gel method. All prepared samples were characterized by X-ray powder diffraction (XRD) analysis, Brunauer-Emmett-Teller (BET) method, X-ray photoelectron spectroscopy (XPS), scanning transmission electron microscopy (STEM), Mott-Schottky analysis and photoluminescence spectroscopy (PL). Phenol oxidation pathways of magnetic photocatalysts modified with Pt, Pd, Cu and Au nanoparticles proceeded by generation of reactive oxygen species, which oxidized phenol to benzoquinone, hydroquinone and catechol. Benzoquinone and maleic acid were products, which were determined in the hydroquinone oxidation pathway. The highest mineralization rate was observed for Pd-TiO2/SiO2@Fe3O4 and Cu-TiO2/SiO2@Fe3O4 photocatalysts, which produced the highest concentration of catechol during photocatalytic reaction. For Pt-TiO2/SiO2@Fe3O4 nanocomposite, a lack of catechol after 60 min of irradiation resulted in low mineralization rate (CO2 formation). It is proposed that the enhanced photocatalytic activity of palladium and copper-modified photocatalysts is related to an increase in the amount of adsorption sites and efficient charge carrier separation, whereas the keto-enol tautomeric equilibrium retards the rate of phenol photomineralization on Au-TiO2/SiO2@Fe3O4. The magnetization hysteresis loop indicated that the obtained hybrid photocatalyst showed magnetic properties and therefore could be easily separated after treatment process.


Applied Surface Science | 2016

Visible light activity of pulsed layer deposited BiVO4/MnO2 films decorated with gold nanoparticles: The evidence for hydroxyl radicals formation

Konrad Trzciński; Mariusz Szkoda; M. Sawczak; Jakub Karczewski; Anna Lisowska-Oleksiak


Applied Surface Science | 2016

Enhanced photoelectrochemical performance of inorganic–organic hybrid consisting of BiVO4 and PEDOT:PSS

Konrad Trzciński; Mariusz Szkoda; Katarzyna Siuzdak; M. Sawczak; Anna Lisowska-Oleksiak


Solid State Ionics | 2015

Photoelectrochemical properties of BIMEVOX (ME = Cu, Zn, Mn) electrodes in contact with aqueous electrolyte

Konrad Trzciński; A. Borowska-Centkowska; M. Sawczak; Anna Lisowska-Oleksiak


Solid State Ionics | 2017

Electrodes consisting of PEDOT modified by Prussian Blue analogues deposited onto titania nanotubes – Their highly improved capacitance

Mariusz Szkoda; Konrad Trzciński; Jakub Rysz; Maria Gazda; Katarzyna Siuzdak; Anna Lisowska-Oleksiak


Synthetic Metals | 2015

Electrochemical characterization of a composite comprising PEDOT/PSS and N doped TiO2 performed in aqueous and non-aqueous electrolytes

Konrad Trzciński; Anna Lisowska-Oleksiak


Electrochimica Acta | 2017

Photocatalytical properties of maze-like MoO3 microstructures prepared by anodization of Mo plate

Mariusz Szkoda; Konrad Trzciński; Katarzyna Siuzdak; Anna Lisowska-Oleksiak


Electrochimica Acta | 2016

Electrochemical and photoelectrochemical characterization of photoanodes based on titania nanotubes modified by a BiVO4 thin film and gold nanoparticles

Konrad Trzciński; Mariusz Szkoda; Katarzyna Siuzdak; M. Sawczak; Anna Lisowska-Oleksiak


Advanced Materials Interfaces | 2016

Micropatterning of BiVO4 Thin Films Using Laser-Induced Crystallization

Konrad Trzciński; Raul D. Rodriguez; Constance Schmidt; Mahfujur Rahaman; M. Sawczak; Anna Lisowska-Oleksiak; Jacek Gasiorowski; D. R. T. Zahn


Thin Solid Films | 2017

Optical and photoelectrochemical characterization of pulsed laser deposited Bi4V2O11, BICUVOX, and BIZNVOX

Konrad Trzciński; Jacek Gasiorowski; A. Borowska-Centkowska; Mariusz Szkoda; M. Sawczak; Kurt Hingerl; D. R. T. Zahn; Anna Lisowska-Oleksiak

Collaboration


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Anna Lisowska-Oleksiak

Gdańsk University of Technology

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Mariusz Szkoda

Gdańsk University of Technology

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Katarzyna Siuzdak

Polish Academy of Sciences

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M. Sawczak

Polish Academy of Sciences

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A. Borowska-Centkowska

Warsaw University of Technology

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Andrzej P. Nowak

Gdańsk University of Technology

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Beata Wicikowska

Gdańsk University of Technology

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Jakub Karczewski

Gdańsk University of Technology

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Jakub Rysz

Jagiellonian University

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Marcin Łapiński

Gdańsk University of Technology

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