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Nano-droplet jumping due to surface wettability variation: molecular modeling approach

Journal: Physical Chemistry Chemical Physics (14639084)Year: 13 December 2022Volume: 25Issue: Pages: 2161 - 2166
Farrokhbin M. Hashemzadeh Rizi S.Lohrasebi A.a
DOI:10.1039/d2cp05447gLanguage: English

Abstract

The effect of substrate hydrophobicity on the dynamics of water nano-droplets is computationally studied using the molecular dynamics method. It is observed that the droplet moves upward by increasing the substrate hydrophobicity and then falls down onto the substrate, and during this process, the droplet-substrate interfacial area effectively declines. Moreover, the results indicate that above a critical substrate hydrophobicity, which depends on the droplet radius, the droplet completely detaches from the substrate. The droplet behavior is described at the molecular level using van der Waals attractions for the liquid-solid interface. © 2023 The Royal Society of Chemistry.


Author Keywords

Other Keywords

Hydrophobic and Hydrophilic InteractionsMolecular Dynamics SimulationWettabilityDropsMolecular dynamicsPhase interfacesVan der Waals forcesDroplet behaviorsInterfacial areasLiquid/solid interfaceModeling approachMolecular dynamics methodsMolecular levelsNano-dropletsSurface wettabilityVan der Waals attractionWettability variationchemical phenomenaHydrophobicity