Martina Požar
University of Split
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Publication
Featured researches published by Martina Požar.
Journal of Chemical Physics | 2016
Martina Požar; Ariadni P. Kerasidou; Bernarda Lovrinčević; Larisa Zoranić; Marijana Mijaković; Tomislav Primorac; Franjo Sokolić; Victor Teboul; Aurélien Perera
The evolution of the micro-segregated structure of aqueous methanol mixtures, in the temperature range 300 K-120 K, is studied with computer simulations, from the static structural point of view. The structural heterogeneity of water is reinforced at lower temperatures, as witnessed by a pre-peak in the oxygen-oxygen structure factor. Water tends to form predominantly chain-like clusters at lower temperatures and smaller concentrations. Methanol domains have essentially the same chain-like cluster structure as the pure liquid at high concentrations and becomes monomeric at smaller ones. Concentration fluctuations decrease with temperature, leading to quasi-ideal Kirkwood-Buff integrals, despite the enhanced molecular interactions, which we interpret as the signature of non-interacting segregated water and methanol clusters. This study throws a new light on the nature of the micro-heterogeneous structure of this mixture: the domain segregation is essentially based on the appearance of linear water clusters, unlike other alcohol aqueous mixtures, such as with propanol or butanol, where the water domains are more bulky.
Journal of Chemical Physics | 2016
Martina Požar; Bernarda Lovrinčević; Larisa Zoranić; Marijana Mijaković; Franjo Sokolić; Aurélien Perera
Methanol-ethanol mixtures under ambient conditions of temperature and pressure are studied by computer simulations, with the aim to sort out how the ideality of this type of mixtures differs from that of a textbook example of an ideal mixture. This study reveals two types of ideality, one which is related to simple disorder, such as in benzene-cyclohexane mixtures, and another found in complex disorder mixtures of associated liquids. It underlines the importance of distinguishing between concentration fluctuations, which are shared by both types of systems, and the structural heterogeneity, which characterises the second class of disorder. Methanol-1propanol mixtures are equally studied and show a quasi-ideality with many respect comparable to that of the methanol-ethanol mixtures, hinting at the existence of a super-ideality in neat mono-ol binary mixtures, driven essentially by the strong hydrogen bonding and underlying hydroxyl group clustering.
Journal of Molecular Liquids | 2018
Tomislav Primorac; Martina Požar; Franjo Sokolić; Larisa Zoranić; Tomaz Urbic
Methanol is the simplest alcohol and possible energy carrier because it is easier to store than hydrogen and burns cleaner than fossil fuels. It is a colorless liquid, completely miscible with water and organic solvents and is very hygroscopic. Here, simple two-dimensional models of methanol, based on Mercedes-Benz (MB) model of water, are examined by Monte Carlo simulations. Methanol particles are modeled as dimers formed by an apolar Lennard-Jones disk, mimicking the methyl group, and a sphere with two hydrogen bonding arms for the hydroxyl group. The used models are the one proposed by Hribar-Lee and Dill (Acta Chimica Slovenica, 53:257, 2006.) with the overlapping discs and a new model with tangentially fused dimers. The comparison was done between the models, in connection to the MB water, as well as with experimental results and with new simulations done for 3D models of methanol. Both 2D models show similar trends in structuring and thermodynamics. The difference is the most pronounced at lower temperatures, where the smaller model exhibits spontaneous crystallization, while the larger model shows metastable states. The 2D structural organization represents well the clustering tendency observed in 3D models, as well as in experiments. The models qualitatively agree with the bulk methanol thermodynamic properties like density and isothermal compressibility, however, heat capacity at the constant pressure shows trend more similar to the water behavior. This work on the smallest amphiphilic organic solute provides a simple testing ground to study the competition between polar and non-polar effects within the molecule and physical properties.
Physical Chemistry Chemical Physics | 2015
Martina Požar; Jean-Baptiste Seguier; Jonas Guerche; Redha Mazighi; Larisa Zoranić; Marijana Mijaković; Bernarda Kežić-Lovrinčević; Franjo Sokolić; Aurélien Perera
Physical Chemistry Chemical Physics | 2016
Martina Požar; Bernarda Lovrinčević; Larisa Zoranić; Tomislav Primorac; Franjo Sokolić; Aurélien Perera
Physical Chemistry Chemical Physics | 2017
Martina Požar; Aurélien Perera
Journal of Molecular Liquids | 2017
Martina Požar; Aurélien Perera
Journal of Molecular Liquids | 2017
Martina Požar; Aurélien Perera
The 13th International "Greta Pifat Mrzljak" School of Biophysics."ABC of Physics of Life: Book of abstracts" | 2016
Martina Požar; Bernarda Lovrinčević; Larisa Zoranić; Tomislav Primorac; Franjo Sokolić; Aurélien Perera
The 13th International "Greta Pifat Mrzljak" School of Biophysics. "ABC of Physics of Life: Book of abstracts" | 2016
Tomislav Primorac; Franjo Sokolić; Jadran Vrabec; Tatjana Janzen; Larisa Zoranić; Martina Požar; Bernarda Lovrinčević; Aurélien Perera