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Auriemma, G., Russo, P., Gaudio, P. D., García‐González, C. A., Landín, M., & Aquino, R. P. (2020). Technologies and Formulation Design of Polysaccharide-Based Hydrogels for Drug Delivery. Molecules, 25(14), 3156. https://doi.org/10.3390/molecules25143156 />
Zhang, X., Ding, H., Zhou, Y., Li, Z., Bai, Y., & Zhang, L. (2024). Antidehydration and Stable Mechanical Properties during the Phase Transition of the PNIPAM-Based Hydrogel for Body-Temperature-Monitoring Sensors. Acs Applied Materials & Interfaces, 16(45), 62776-62787. https://doi.org/10.1021/acsami.4c15748 />
Saruwatari, A., Kamiyama, Y., Tamate, R., Nakanishi, J., & Ueki, T. (2026). Toward Dynamic Liquid Cell Scaffold: Photoreversible Ion Gels Exhibiting Light‐Induced Sol‐Gel Transitions. Macromolecular Rapid Communications. https://doi.org/10.1002/marc.202500909
"hydrogel to aerogel reversible conversion"
"reversible hydrogel aerogel transformation"
"sol-gel transition reversible"
"stimuli-responsive hydrogel aerogel"
"water-ethanol reversible aerogel"
"hydrogel aerogel phase transition"
/> Auriemma, G., Russo, P., Gaudio, P. D., García‐González, C. A., Landín, M., & Aquino, R. P. (2020). Technologies and Formulation Design of Polysaccharide-Based Hydrogels for Drug Delivery. Molecules, 25(14), 3156. https://doi.org/10.3390/molecules25143156
/> Zhang, X., Ding, H., Zhou, Y., Li, Z., Bai, Y., & Zhang, L. (2024). Antidehydration and Stable Mechanical Properties during the Phase Transition of the PNIPAM-Based Hydrogel for Body-Temperature-Monitoring Sensors. Acs Applied Materials & Interfaces, 16(45), 62776-62787. https://doi.org/10.1021/acsami.4c15748
/> Saruwatari, A., Kamiyama, Y., Tamate, R., Nakanishi, J., & Ueki, T. (2026). Toward Dynamic Liquid Cell Scaffold: Photoreversible Ion Gels Exhibiting Light‐Induced Sol‐Gel Transitions. Macromolecular Rapid Communications. https://doi.org/10.1002/marc.202500909