Affiliation:
1. Laboratory for Soft Materials and Interfaces Department of Materials ETH Zürich Vladimir‐Prelog‐Weg 5 Zürich 8093 Switzerland
2. CNR Institute for Complex Systems Uos Sapienza P.le A. Moro 2 Roma 00185 Italy
3. Department of Physics Sapienza University of Rome P.le A. Moro 2 Roma 00185 Italy
4. Soft Condensed Matter & Biophysics Debye Institute for Nanomaterials Science Utrecht University Princetonplein 1 CC Utrecht 3584 The Netherlands
Abstract
AbstractThe encapsulation of a rigid core within a soft polymeric shell allows obtaining composite colloidal particles that retain functional properties, e.g., optical or mechanical. At the same time, it favors their adsorption at fluid interfaces with a tunable interaction potential to realize tailored two‐dimensional (2D) materials. Although they have already been employed for 2D assembly, the conformation of single particles, which is essential to define the monolayer properties, has been largely inferred via indirect or ex situ techniques. Here, by means of in situ atomic force microscopy experiments, the authors uncover the interfacial morphology of hard‐core soft‐shell microgels, integrating the data with numerical simulations to elucidate the role of the core properties, of the shell thicknesses, and that of the grafting density. They identify that the hard core can influence the conformation of the polymer shells. In particular, for the case of small shell thickness, low grafting density, or poor core affinity for water, the core protrudes more into the organic phase, and the authors observe a decrease in‐plane stretching of the network at the interface. By rationalizing their general wetting behavior, such composite particles can be designed to exhibit specific inter‐particle interactions of importance both for the stabilization of interfaces and for the fabrication of 2D materials with tailored functional properties.
Funder
H2020 Marie Skłodowska-Curie Actions
Subject
General Physics and Astronomy,General Engineering,Biochemistry, Genetics and Molecular Biology (miscellaneous),General Materials Science,General Chemical Engineering,Medicine (miscellaneous)
Cited by
8 articles.
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