“4D printing of self-healing and shape-memory hydrogels sensitive to body temperature”
Abstract & Research Summary
The development of thermoresponsive shape-memory hydrogels (SMHs) that combine robust mechanical properties, self-healing capabilities, and 4D printing potential holds great promise for advanced biomedical and smart material applications. Such hydrogels with trigger temperatures close to but below 37 °C are ideal for biomedical use. Despite their potential, developing SMHs that meet the right trigger temperature along with sufficient mechanical strength remains a significant challenge. We present here a simple strategy to create 4D-printed mechanically robust, self-healing and shape-memory supramolecular hydrogels with a Young’s modulus and tensile strength of 51 ± 1 MPa, and 6.0 ± 0.3 MPa, respectively. They exhibit a trigger temperature between 32 °C and 40 °C that can be adjusted by the composition of the hydrogel network. The hydrogels are prepared by terpolymerizing hydrophobic …
Annual Citation Trajectory
24 total citationsCite This Publication
@article{aydin20254dprinti,
title = {4D printing of self-healing and shape-memory hydrogels sensitive to body temperature},
author = {Gamze Aydin, Turdimuhammad Abdullah, Oguz Okay},
journal = {European Polymer Journal 223, 113651},
volume = {223},
pages = {113651},
year = {2025},
publisher = {Pergamon},
doi = {10.1016/j.eurpolymj.2024.113651},
url = {https://doi.org/10.1016/j.eurpolymj.2024.113651},
}Bibliographic Metadata
Related Research Works
Back to All Publications →“Acrylation of bioresources for 3D printing: strategies, technologies, and applications”
Progress in Materials Science, 101641
“Designing 4D printed drug delivery systems based on smart polymers and hydrogels: principles, strategies, and future perspectives”
Progress in Biomedical Engineering
“High-solid acrylic resins based on bio-derived lauryl methacrylate for varnish and paint applications”
Journal of Polymer Research 33 (3), 92