Softness Matters: Effects of Compression on the Behavior of Adsorbed Microgels at Interfaces

Fuente: arXiv
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Autores principales: Gerelli, Yuri, Camerin, Fabrizio, Bochenek, Steffen, Schmidt, Maximilian M., Maestro, Armando, Richtering, Walter, Zaccarelli, Emanuela, Scotti, Andrea
Formato: Preprint
Publicado: 2023
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author Gerelli, Yuri
Camerin, Fabrizio
Bochenek, Steffen
Schmidt, Maximilian M.
Maestro, Armando
Richtering, Walter
Zaccarelli, Emanuela
Scotti, Andrea
author_facet Gerelli, Yuri
Camerin, Fabrizio
Bochenek, Steffen
Schmidt, Maximilian M.
Maestro, Armando
Richtering, Walter
Zaccarelli, Emanuela
Scotti, Andrea
contents Deformable colloids and macromolecules adsorb at interfaces, as they decrease the interfacial energy between the two media. The deformability, or softness, of these particles plays a pivotal role in the properties of the interface. In this study, we employ a comprehensive \emph{in situ} approach, combining neutron reflectometry with molecular dynamics simulations, to thoroughly examine the profound influence of softness on the structure of microgel Langmuir monolayers under compression. Lateral compression of both hard and soft microgel particle monolayers induces substantial structural alterations, leading to an amplified protrusion of the microgels into the aqueous phase. However, a critical distinction emerges: hard microgels are pushed away from the interface, in stark contrast to the soft ones, which remain steadfastly anchored to it. Concurrently, on the air-exposed side of the monolayer, lateral compression induces a flattening of the surface of the hard monolayer. This phenomenon is not observed for the soft particles as the monolayer is already extremely flat even in the absence of compression. These findings significantly advance our understanding of the pivotal role of softness on both the equilibrium phase behavior of the monolayer and its effect when soft colloids are used as stabilizers of responsive interfaces and emulsions.
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id arxiv_https___arxiv_org_abs_2311_08222
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Softness Matters: Effects of Compression on the Behavior of Adsorbed Microgels at Interfaces
Gerelli, Yuri
Camerin, Fabrizio
Bochenek, Steffen
Schmidt, Maximilian M.
Maestro, Armando
Richtering, Walter
Zaccarelli, Emanuela
Scotti, Andrea
Soft Condensed Matter
Applied Physics
Deformable colloids and macromolecules adsorb at interfaces, as they decrease the interfacial energy between the two media. The deformability, or softness, of these particles plays a pivotal role in the properties of the interface. In this study, we employ a comprehensive \emph{in situ} approach, combining neutron reflectometry with molecular dynamics simulations, to thoroughly examine the profound influence of softness on the structure of microgel Langmuir monolayers under compression. Lateral compression of both hard and soft microgel particle monolayers induces substantial structural alterations, leading to an amplified protrusion of the microgels into the aqueous phase. However, a critical distinction emerges: hard microgels are pushed away from the interface, in stark contrast to the soft ones, which remain steadfastly anchored to it. Concurrently, on the air-exposed side of the monolayer, lateral compression induces a flattening of the surface of the hard monolayer. This phenomenon is not observed for the soft particles as the monolayer is already extremely flat even in the absence of compression. These findings significantly advance our understanding of the pivotal role of softness on both the equilibrium phase behavior of the monolayer and its effect when soft colloids are used as stabilizers of responsive interfaces and emulsions.
title Softness Matters: Effects of Compression on the Behavior of Adsorbed Microgels at Interfaces
topic Soft Condensed Matter
Applied Physics
url https://arxiv.org/abs/2311.08222