Plastic deformation, wrinkling, and recovery in microgel multilayers

Microgel multi-layer films assembled from anionic particles and linear polycation were prepared on elastomeric substrates and their self-healing properties studied. Dried films were imaged during mechanical deformation and were determined to undergo plastic deformation in response to linear strain,...

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Veröffentlicht in:Polymer chemistry 2013-09, Vol.4 (18), p.4890-4896
Hauptverfasser: Gaulding, Jeffrey C, Spears, Jr, Mark W, Lyon, L Andrew
Format: Artikel
Sprache:eng
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Zusammenfassung:Microgel multi-layer films assembled from anionic particles and linear polycation were prepared on elastomeric substrates and their self-healing properties studied. Dried films were imaged during mechanical deformation and were determined to undergo plastic deformation in response to linear strain, leading to film buckling upon strain relaxation. Hydration leads to rapid reorganization of the film building blocks, permitting recovery of the film to the undamaged state. Additionally, films were determined to heal in the presence of high relative humidity environments, suggesting that film swelling and hydration is a major factor in the restoration of film integrity, and that full immersion in solvent is not required for healing. Films prepared from microgels with lower levels of acid content and/or polycation length, factors strongly connected to the charge density and presumably the connectivity of the film, also display self-healing characteristics.
ISSN:1759-9954
1759-9962
DOI:10.1039/c3py00173c