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- W2429482835 endingPage "20150130" @default.
- W2429482835 startingPage "20150130" @default.
- W2429482835 abstract "Non-densely packed interfacial monolayers from charged micrometre-sized colloid particles find applications for producing micropatterned surfaces. The soft electrostatic repulsion between the particles in a monolayer on an air/water (or oil/water) interface is mediated by the non-polar fluid, where Debye screening is absent and the distances between the particles are considerably greater than their diameters. Surface pressure versus area isotherms were measured at the air/water interface. The experiments show that asymptotically the surface pressure is inversely proportional to the third power of the interparticle distance. A theoretical model is developed that predicts not only the aforementioned asymptotic law but also the whole surface pressure versus area dependence. An increase in the surface pressure upon aggregation of charged particles in the interfacial monolayers is experimentally established. This effect is explained by the developed theoretical model, which predicts that the surface pressure should linearly increase with the square root of the particle mean aggregation number. The effect of added electrolyte on the aggregation is also investigated. The data lead to the conclusion that 'limited aggregation' exists in the monolayers of charged particles. In brief, the stronger electrostatic repulsion between the bigger aggregates leads to a higher barrier to their coalescence that, in turn, prevents any further aggregation, i.e. negative feedback is present.This article is part of the themed issue 'Soft interfacial materials: from fundamentals to formulation'." @default.
- W2429482835 created "2016-06-24" @default.
- W2429482835 creator A5028589937 @default.
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- W2429482835 date "2016-07-28" @default.
- W2429482835 modified "2023-09-30" @default.
- W2429482835 title "Soft electrostatic repulsion in particle monolayers at liquid interfaces: surface pressure and effect of aggregation" @default.
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- W2429482835 doi "https://doi.org/10.1098/rsta.2015.0130" @default.
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