Kontakt:
- email:
- joanna.grabowska@pg.edu.pl
Zajmowane stanowiska:
Adiunkt
- miejsce pracy:
- Katedra Chemii Fizycznej
Budynek A Wydziału Chemicznego, 219

Publikacje:
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Publikacja
- JOURNAL OF CHEMICAL PHYSICS - Rok 2024
Using molecular dynamics simulations, we show that a molecule of moderately active antifreeze protein (type III AFP, QAE HPLC-12 isoform) is able to interact with ice in an indirect manner. This interaction occurs between the ice binding site (IBS) of the AFP III molecule and the surface of ice, and it is mediated by liquid water which separates these surfaces. As a result, the AFP III molecule positions itself at a specific orientation...
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Publikacja
- J. Grabowska
- S. Blazquez
- E. Sanz
- E. G. Noya
- I. M. Zerón
- J. Algaba
- J. M. Míguez
- F. J. Blas
- C. Vega
- JOURNAL OF CHEMICAL PHYSICS - Rok 2023
In this work, we shall estimate via computer simulations the homogeneous nucleation rate for the methane hydrate at 400 bars for a supercooling of about 35 K. The TIP4P/ICE model and a Lennard-Jones center were used for water and methane, respectively. To estimate the nucleation rate, the seeding technique was employed. Clusters of the methane hydrate of different sizes were inserted into the aqueous phase of a two-phase gas–liquid...
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Publikacja
- J. Algaba
- I. M. Zerón
- J. M. Míguez
- J. Grabowska
- S. Blazquez
- E. Sanz
- C. Vega
- F. J. Blas
- JOURNAL OF CHEMICAL PHYSICS - Rok 2023
In this paper, the solubility of carbon dioxide (CO2) in water along the isobar of 400 bar is determined by computer simulations using the well-known TIP4P/Ice force field for water and the TraPPE model for CO2. In particular, the solubility of CO2 in water when in contact with the CO2 liquid phase and the solubility of CO2 in water when in contact with the hydrate have been determined. The solubility of CO2 in a liquid–liquid...
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Publikacja
- J. Grabowska
- S. Blazquez
- E. Sanz
- I. M. Zerón
- J. Algaba
- J. M. Míguez
- F. J. Blas
- C. Vega
- JOURNAL OF PHYSICAL CHEMISTRY B - Rok 2022
In this paper, the solubility of methane in water along the 400 bar isobar is determined by computer simulations using the TIP4P/Ice force field for water and a simple LJ model for methane. In particular, the solubility of methane in water when in contact with the gas phase and the solubility of methane in water when in contact with the hydrate has been determined. The solubility of methane in a gas–liquid system decreases as temperature...
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Revealing the Frank–Evans “Iceberg” Structures within the Solvation Layer around Hydrophobic SolutesPublikacja
Using computer simulations, the structural properties of solvation water of three model hydrophobic molecules, methane and two fullerenes (C60 and C80), were studied. Systems were simulated at temperatures in the range of 250−298 K. By analyzing both the local ordering of the molecules of water in the solvation layers and the structure of hydrogen bond network, it is shown that in the solvation layer of hydrophobic molecules, ordered...
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