Diffusiophoresis of ionic catalytic particles

Fuente: arXiv
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Main Authors: Asmolov, Evgeny S., Vinogradova, Olga I.
Format: Preprint
Published: 2024
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author Asmolov, Evgeny S.
Vinogradova, Olga I.
author_facet Asmolov, Evgeny S.
Vinogradova, Olga I.
contents A migration of charged particles relative to a solvent, caused by a gradient of salt concentration and termed a diffusiophoresis, is of much interest being exploited in many fields. Existing theories deal with diffusiophoresis of passive inert particles. In this paper, we extend prior models by focusing on a particle, which is both passive and catalytic, by postulating an uniform ion release over its surface. We derive an expression for a particle velocity depending on a dimensionless ion flux (Damkohler number Da) and show that a charged region is formed at distances of the order of the particle size, provided the diffusion coefficients of anions and cations are unequal. When Da becomes large enough, the contribution of this (outer) region to the particle velocity dominates. In this case the speed of catalytic passive particles augments linearly with Da and is inversely proportional to the square of electrolyte concentration. As a result, they always migrate towards a high concentration region and in dilute solutions become much faster than inert (non-catalytic) ones.
format Preprint
id arxiv_https___arxiv_org_abs_2404_17928
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Diffusiophoresis of ionic catalytic particles
Asmolov, Evgeny S.
Vinogradova, Olga I.
Soft Condensed Matter
A migration of charged particles relative to a solvent, caused by a gradient of salt concentration and termed a diffusiophoresis, is of much interest being exploited in many fields. Existing theories deal with diffusiophoresis of passive inert particles. In this paper, we extend prior models by focusing on a particle, which is both passive and catalytic, by postulating an uniform ion release over its surface. We derive an expression for a particle velocity depending on a dimensionless ion flux (Damkohler number Da) and show that a charged region is formed at distances of the order of the particle size, provided the diffusion coefficients of anions and cations are unequal. When Da becomes large enough, the contribution of this (outer) region to the particle velocity dominates. In this case the speed of catalytic passive particles augments linearly with Da and is inversely proportional to the square of electrolyte concentration. As a result, they always migrate towards a high concentration region and in dilute solutions become much faster than inert (non-catalytic) ones.
title Diffusiophoresis of ionic catalytic particles
topic Soft Condensed Matter
url https://arxiv.org/abs/2404.17928