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dc.contributor.authorBakhshandeh, Aminpt_BR
dc.contributor.authorFrydel, Derekpt_BR
dc.contributor.authorDiehl, Alexandrept_BR
dc.contributor.authorLevin, Yanpt_BR
dc.date.accessioned2020-02-06T04:17:42Zpt_BR
dc.date.issued2019pt_BR
dc.identifier.issn0031-9007pt_BR
dc.identifier.urihttp://hdl.handle.net/10183/205517pt_BR
dc.description.abstractTo explore charge regulation (CR) in physicochemical and biophysical systems, we present a model of colloidal particles with sticky adsorption sites which account for the formation of covalent bonds between the hydronium ions and the surface functional groups. Using this model and Monte Carlo simulations, we find that the standard Ninham and Parsegian (NP) theory of CR leads to results which deviate significantly from computer simulations. The problem with the NP approach is traced back to the use of a bulk equilibrium constant to account for surface chemical reactions. To resolve this difficulty we present a new theory of CR. The fundamental ingredient of the new approach is the sticky length, which is nontrivially related to the bulk equilibrium constant. The theory is found to be in excellent agreement with computer simulations, without any adjustable parameters. As an application of the theory we calculate the effective charge of colloidal particles containing carboxyl groups, as a function of pH and salt concentration.en
dc.format.mimetypeapplication/pdfpt_BR
dc.language.isoengpt_BR
dc.relation.ispartofPhysical review letters. Vol. 123, no. 20 (Nov. 2019), 208004, 6 p.pt_BR
dc.rightsOpen Accessen
dc.subjectColóidespt_BR
dc.subjectMétodo de Monte Carlopt_BR
dc.subjectEquação de Poisson-Boltzmannpt_BR
dc.titleCharge regulation of colloidal particles : theory and simulationspt_BR
dc.typeArtigo de periódicopt_BR
dc.identifier.nrb001108324pt_BR
dc.type.originEstrangeiropt_BR


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