dr inż. Mariusz Szkoda | Politechnika Gdańska

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dr inż. Mariusz Szkoda

Kontakt:

email:
mariusz.szkoda1@pg.edu.pl
strona:
https://mostwiedzy.pl/mariusz-szkoda,267872-1

Zajmowane stanowiska:

Adiunkt

miejsce pracy:
Katedra Chemii i Technologii Materiałów Funkcjonalnych
Budynek B Wydziału Chemicznego, 408
telefon:
3486434
dr inż. Mariusz Szkoda

Publikacje:

  1. Publikacja

    - APPLIED SURFACE SCIENCE - Rok 2025

    This study presents the hydrothermal synthesis of a novel TiO2 nanotubes/MoSe2 nanocomposite and investigates its enhanced electrochemical capacitance properties. The composite material was fabricated through a hydrothermal method, embedding MoSe2 onto TiO2 nanotubes. The resulting composite, termed Ti/TiO2/MoSe2, exhibited significantly improved electrochemical capacitance compared to TiO2 nanotubes alone. The synthesized composite...

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  2. Publikacja
    • L. Kubińska
    • M. Szkoda
    • M. Skorupska
    • P. Grabowska
    • M. Gajewska
    • J. P. Lukaszewicz
    • A. Ilnicka

    - Scientific Reports - Rok 2024

    Electrocatalytic water splitting for green hydrogen production necessitates effective electrocatalysts. Currently, commercial catalysts are primarily platinum-based. Therefore, finding catalysts with comparable catalytic activity but lower cost is essential. This paper describes spinel-structured catalysts containing nickel cobaltite NiCo2O4, graphene, and additionally doped with heteroatoms. The structure and elemental composition...

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  3. The electroanalytical behavior of SnSx (x = 1, 2) encapsulated into a carbon phase was studied using the galvanostatic intermittent titration technique (GITT) and electrochemical impedance spectroscopy (EIS). These techniques are widely utilized in battery systems to investigate the diffusion of alkali metal cations in anode and cathode materials depending on the concentration of ions in the host material. Here, we report different...

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  4. Publikacja

    - Scientific Reports - Rok 2024

    Tin sulphide compounds (SnSx, x = 1, 2) are potential anode materials for potassium-ion batteries (PIBs) due to their characteristic layered structure, high theoretical capacity, non-toxicity and low production cost. However, they suffer from significant volume changes resulting in poor performance of such anodes. In this work incorporation of SnSx into the carbon structure was expected to overcome these disadvantages. Two SnS-based...

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  5. Publikacja

    In this study, Co-bearing Metal-Organic Frameworks (MOFs) are grown via a facile solvothermal process on the surface of two kinds of conductive substrates – titanium dioxide nanotubes (TiO2NT) and fluorine-doped tin oxide (FTO) glass and tested as electrodes in the electrochemical hydrogen evolution reaction (HER). The materials derived from three organic linkers - terephthalic acid (Co-BDC), 2-aminoterephthalic acid (Co-BDCNH2),...

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