Pawel Weronski
Affiliations: | 2005-2007 | Polish Academy of Sciences, Warszawa, mazowieckie, Poland |
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Kubala P, Batys P, Barbasz J, et al. (2022) Random sequential adsorption: An efficient tool for investigating the deposition of macromolecules and colloidal particles. Advances in Colloid and Interface Science. 306: 102692 |
Batys P, Weroński P, Nosek M. (2016) Wet formation and structural characterization of quasi-hexagonal monolayers. Journal of Colloid and Interface Science. 461: 211-4 |
Batys P, Weroński P. (2012) Modeling of LbL multilayers with controlled thickness, roughness, and specific surface area. The Journal of Chemical Physics. 137: 214706 |
Weroński P, Elimelech M. (2008) Novel numerical method for calculating initial flux of colloid particle adsorption through an energy barrier. Journal of Colloid and Interface Science. 319: 406-15 |
Adamczyk Z, Weroński P, Barbasz J. (2008) Formation of multilayered structures in the layer by layer deposition of colloid particles. Journal of Colloid and Interface Science. 317: 1-10 |
de Kerchove AJ, Weroński P, Elimelech M. (2007) Adhesion of nonmotile Pseudomonas aeruginosa on "soft" polyelectrolyte layer in a radial stagnation point flow system: measurements and model predictions. Langmuir : the Acs Journal of Surfaces and Colloids. 23: 12301-8 |
Weronski P, Jiang Y, Rasmussen S. (2007) Molecular dynamics study of small PNA molecules in lipid-water system. Biophysical Journal. 92: 3081-91 |
Weroński P. (2007) Effect of electrostatic interaction on deposition of colloid on partially covered surfaces: Part II. Results of computer simulations Colloids and Surfaces a: Physicochemical and Engineering Aspects. 294: 267-279 |
Weroński P. (2007) Effect of electrostatic interaction on deposition of colloid on partially covered surfaces: Part I. Model formulation Colloids and Surfaces a: Physicochemical and Engineering Aspects. 294: 254-266 |
Adamczyk Z, Weroński P, Barbasz J, et al. (2007) Modelling self-assembling of colloid particles in multilayered structures Applied Surface Science. 253: 5776-5780 |