The impact of the interfacial Kapitza resistance on colloidal thermophoresis

Fuente: arXiv
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Main Authors: Olarte-Plata, Juan D., Bresme, Fernando
Format: Preprint
Published: 2023
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author Olarte-Plata, Juan D.
Bresme, Fernando
author_facet Olarte-Plata, Juan D.
Bresme, Fernando
contents Thermal gradients impart thermophoretic forces on colloidal particles, pushing colloids towards cold or hot regions, a phenomenon called thermophoresis. Current theoretical approaches relate the Soret coefficient to local changes in the interfacial tension around the colloid, which lead to fluid flow around the colloid surface. The Kapitza resistance, a key variable in the description of interfacial heat transport, is an experimentally accessible property that modifies interfacial thermal fields. Here, we introduce a theoretical approach that describes colloid thermophoretic forces by incorporating explicitly Kapitza resistance effects. Our formulation can be used to monitor the dependence of thermophoresis on the interfacial thermal resistance. We show that the resistance modifies the thermal field around the colloids and identify experimental conditions where the Kapitza resistance influences the thermophoretic forces. We validate our theoretical approach by implementing a non-equilibrium molecular dynamics model of a colloid suspended in a solvent.
format Preprint
id arxiv_https___arxiv_org_abs_2307_10138
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle The impact of the interfacial Kapitza resistance on colloidal thermophoresis
Olarte-Plata, Juan D.
Bresme, Fernando
Soft Condensed Matter
Thermal gradients impart thermophoretic forces on colloidal particles, pushing colloids towards cold or hot regions, a phenomenon called thermophoresis. Current theoretical approaches relate the Soret coefficient to local changes in the interfacial tension around the colloid, which lead to fluid flow around the colloid surface. The Kapitza resistance, a key variable in the description of interfacial heat transport, is an experimentally accessible property that modifies interfacial thermal fields. Here, we introduce a theoretical approach that describes colloid thermophoretic forces by incorporating explicitly Kapitza resistance effects. Our formulation can be used to monitor the dependence of thermophoresis on the interfacial thermal resistance. We show that the resistance modifies the thermal field around the colloids and identify experimental conditions where the Kapitza resistance influences the thermophoretic forces. We validate our theoretical approach by implementing a non-equilibrium molecular dynamics model of a colloid suspended in a solvent.
title The impact of the interfacial Kapitza resistance on colloidal thermophoresis
topic Soft Condensed Matter
url https://arxiv.org/abs/2307.10138