dr hab. Maciej Bobrowski | Gdańsk University of Technology

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dr hab. Maciej Bobrowski

Contact:

email:
macbobro@pg.edu.pl
website:
https://mostwiedzy.pl/maciej-bobrowski,16124-1

Positions:

Associate professor

workplace:
Instytut Nanotechnologii i Inżynierii Materiałowej
Gmach Główny pokój 105
phone:
(58) 347 12 35
dr hab. Maciej Bobrowski

Publications:

  1. Publication

    - JOURNAL OF CHEMICAL PHYSICS - Year 2025

    The catalytic activities of high-spin small Fe(III) oxides have been investigated for efficient hydrogen production through ammonia decomposition, using the artificial force induced reaction method within the framework of density functional theory with the B3LYP hybrid exchange–correlation functional. Our results reveal that the adsorption free energy of NH3 on (Fe2O3 )n (n = 1–4) decreases with increasing cluster size up to n...

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  2. Publication

    - JOURNAL OF CHEMICAL PHYSICS - Year 2021

    Using ab initio electronic structure methods with flexible atomic orbital basis sets, we investigated the electronic structure and stability of reduction products of selected representative cations (C+) constituting ionic liquids. We found that an electron attachment to such cations leads to the neutral radicals, whereas a subsequent attachment of another (i.e., excess) electron leads to adiabatically stable anions only in two...

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  3. Publication
    • A. Sieradzan
    • C. Czaplewski
    • A. Bielicka-Gieldon
    • M. Bobrowski
    • A. Gieldon

    - JOURNAL OF MOLECULAR LIQUIDS - Year 2021

    One of the possible applications of ionic liquids is to produce electricity from heat. The iron oxide nanoparticle is a potent electrical particle, which is expected to improve the heat’s efficiency to electricity conversion, however, it is prone to aggregation and sedimentation, which hamper its application. One of the methods to enhance the nanoparticle’s solubility and electrical properties is the use of a stabilizing component...

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  4. Publication

    - JOURNAL OF MOLECULAR LIQUIDS - Year 2020

    Meanwhile no general and reliable equation determining the Seebeck coefficient (S e ) and involving electro-chemical reaction effects was derived for solutions. We reported the database of 15,000 ionic liquids supplemented by three different redox couple systems: 0.01 mol/l Co 3+/2+ (bpy) 3 , 0.01 mol/l I 3-/3I- and 0.2 mol/l 3- /3I- , and the corresponding estimated Seebeck coefficients. We also reported methods for estimating...

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  5. The p-xylylene monomers of parylene N, C and D have similar high polymerization reactivity. For effective copolymerization processes this fact is basically a draw- back and for instance the copolymerization with styrene doesn't go at all (Corley et al. J Pol Sc 13(68):137­156, 1954). Substitution of terminal hydrogen atoms by chlorine atoms reduces reactivity dramatically. 7,7,8,8-tetrachloro-p- xylylene and 2,5,7,7,8,8-hexachloro-p-xylylene...

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Projects: