Degradable 4D-printed hydration-driven actuators from a single family of amphiphilic star-shaped copolymers
Mathilde Grosjean(École Nationale Supérieure de Chimie de Montpellier), Benjamin Nottelet(Centre National de la Recherche Scientifique)
Cited by 8
Related Papers
Reversibly core-crosslinked PEG-P(HPMA) micelles: Platinum coordination chemistry for competitive-ligand-regulated drug delivery
|Journal of Colloid and Interface Science|2018|27
Release Kinetics of Dexamethasone Phosphate from Porous Chitosan: Comparison of Aerogels and Cryogels
|Biomacromolecules|2023|17
Dynamic PEG–PLA/Hydroxyurethane Networks Based on Imine Bonds as Reprocessable Elastomeric Biomaterials
|Biomacromolecules|2023|17
Degradable Bioadhesives Based on Star PEG–PLA Hydrogels for Soft Tissue Applications
|Biomacromolecules|2022|15
Star poly(lactide-co-glycolide) and poly(ε-caprolactone) polyurethanes with shape memory properties for biomedical applications
|European Polymer Journal|2024|4