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Hydrogels Generated from Cyclic Poly(2-Oxazoline)s Display Unique Swelling and Mechanical Properties.
Trachsel, Lucca; Romio, Matteo; Zenobi-Wong, Marcy; Benetti, Edmondo M.
Afiliación
  • Trachsel L; Tissue Engineering + Biofabrication Laboratory, Department of Health Sciences and Technology, ETH Zürich, Zürich, 8093, Switzerland.
  • Romio M; Laboratory for Surface Science and Technology, Department of Materials, ETH Zürich, Vladimir-Prelog-Weg 5, Zürich, 8093, Switzerland.
  • Zenobi-Wong M; Biointerfaces, Swiss Federal Laboratories for Materials Science and Technology (Empa), Lerchenfeldstrasse 5, CH-9014 St., Gallen, Switzerland.
  • Benetti EM; Tissue Engineering + Biofabrication Laboratory, Department of Health Sciences and Technology, ETH Zürich, Zürich, 8093, Switzerland.
Macromol Rapid Commun ; 42(7): e2000658, 2021 Apr.
Article en En | MEDLINE | ID: mdl-33326133
Cyclic macromolecules do not feature chain ends and are characterized by a higher effective intramolecular repulsion between polymer segments, leading to a higher excluded-volume effect and greater hydration with respect to their linear counterparts. As a result of these unique properties, hydrogels composed of cross-linked cyclic polymers feature enhanced mechanical strength while simultaneously incorporating more solvent with respect to networks formed from their linear analogues with identical molar mass and chemical composition. The translation of topology effects by cyclic polymers into the properties of polymer networks provides hydrogels that ideally do not include defects, such as dangling chain ends, and display unprecedented physicochemical characteristics.
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Texto completo: 1 Base de datos: MEDLINE Asunto principal: Oxazoles / Hidrogeles Idioma: En Revista: Macromol Rapid Commun Año: 2021 Tipo del documento: Article

Texto completo: 1 Base de datos: MEDLINE Asunto principal: Oxazoles / Hidrogeles Idioma: En Revista: Macromol Rapid Commun Año: 2021 Tipo del documento: Article