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dc.contributor.authorBildanov, Eldar-
dc.contributor.authorVikhrenko, Vyacheslav-
dc.contributor.authorPękalski, Jakub-
dc.contributor.authorCiach, A.-
dc.date.accessioned2020-12-16T08:39:02Z-
dc.date.available2020-12-16T08:39:02Z-
dc.date.issued2020-
dc.identifier.citationAdsorption anomalies in a two-dimensional model of cluster-forming systems / Eldar Bildanov [et al.] // Physical Review E. - 2020. - Vol. 101, Iss. 1. - № 012801ru
dc.identifier.urihttps://elib.belstu.by/handle/123456789/37005-
dc.descriptionAdsorption on a boundary line confining a monolayer of particles self-assembling into clusters is studied by MC simulations. We focus on a system of particles interacting via competing interaction potential in which effectively short-range attraction is followed by long-range repulsion, mimicking the so called SALR system. For the chemical potential values below the order-disorder phase transition the adsorption isotherms were shown to undergo non-standard behavior, i. e. the adsorption exhibits a maximum upon structural transition between structureless and disordered cluster fluid. In particular, we have found that the adsorption decreases for increasing chemical potential when (i) clusters dominate over monomers in the bulk, (ii) the density profile in the direction perpendicular to the confining line exhibits an oscillatory decay, (iii) the correlation function in the layer near the adsorption wall exhibits an oscillatory decay in the direction parallel to this wall. Our report indicates striking differences between simple and complex fluid adsorption processes.ru
dc.format.mimetypeapplication/pdfru
dc.language.isoenru
dc.subjectадсорбция частицru
dc.subjectкластерыru
dc.subjectadsorption on a boundary lineru
dc.subjectадсорбция жидкостиru
dc.subjectclustersru
dc.subjectраспределение кластеровru
dc.subjectclusteringru
dc.subjectкластеризацияru
dc.subjectcluster-forming systemsru
dc.titleAdsorption anomalies in a two-dimensional model of cluster-forming systemsru
dc.typeArticleru
dc.identifier.udc544.2-
dc.identifier.DOIDOI: 10.1103/PhysRevE.101.012801-
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