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Detachment of Rough Colloids from Liquid-Liquid Interfaces.
Zanini, Michele; Lesov, Ivan; Marini, Emanuele; Hsu, Chiao-Peng; Marschelke, Claudia; Synytska, Alla; Anachkov, Svetoslav E; Isa, Lucio.
Afiliação
  • Zanini M; Laboratory for Interfaces, Soft Matter and Assembly, Department of Materials , ETH Zurich , Vladimir-Prelog Weg 5 , 8093 Zürich , Switzerland.
  • Lesov I; Department of Chemical and Pharmaceutical Engineering, Faculty of Chemistry and Pharmacy , Sofia University , 1 James Bourchier Avenue , 1164 Sofia , Bulgaria.
  • Marini E; Laboratory for Interfaces, Soft Matter and Assembly, Department of Materials , ETH Zurich , Vladimir-Prelog Weg 5 , 8093 Zürich , Switzerland.
  • Hsu CP; Laboratory for Interfaces, Soft Matter and Assembly, Department of Materials , ETH Zurich , Vladimir-Prelog Weg 5 , 8093 Zürich , Switzerland.
  • Marschelke C; Department of Polymer Interfaces , Leibniz Institute of Polymer Research , Hohe Strasse 6 , D-01069 Dresden , Germany.
  • Synytska A; Department of Polymer Interfaces , Leibniz Institute of Polymer Research , Hohe Strasse 6 , D-01069 Dresden , Germany.
  • Anachkov SE; Department of Chemical and Pharmaceutical Engineering, Faculty of Chemistry and Pharmacy , Sofia University , 1 James Bourchier Avenue , 1164 Sofia , Bulgaria.
  • Isa L; Laboratory for Interfaces, Soft Matter and Assembly, Department of Materials , ETH Zurich , Vladimir-Prelog Weg 5 , 8093 Zürich , Switzerland.
Langmuir ; 34(16): 4861-4873, 2018 04 24.
Article em En | MEDLINE | ID: mdl-29590753
Particle surface roughness and chemistry play a pivotal role in the design of new particle-based materials. Although the adsorption of rough particles has been studied in the literature, desorption of such particles remains poorly understood. In this work, we specifically focus on the detachment of rough and chemically modified raspberry-like microparticles from water/oil interfaces using colloidal-probe atomic force microscopy. We observe different contact-line dynamics occurring upon particle detachment (pinning vs sliding), depending on both the particle roughness and surface modification. In general, surface roughness leads to a reduction of the desorption force of hydrophobic particles into the oil and provides a multitude of pinning points that can be accessed by applying different loads. Our results hence suggest future strategies for stabilization and destabilization of Pickering emulsions and foams.

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Ano de publicação: 2018 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Ano de publicação: 2018 Tipo de documento: Article