Achieving High-Speed Retraction in Stretchable Hydrogels
Hydrogels mimicking elastomeric biopolymers such as resilin, responsible for power-amplified activities in biological species necessary for locomotion, feeding, and defense have applications in soft robotics and prosthetics. Here, we report a bioinspired hydrogel synthesized through a free-radical p...
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Veröffentlicht in: | ACS applied materials & interfaces 2020-09, Vol.12 (36), p.40719-40727 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | Hydrogels mimicking elastomeric biopolymers such as resilin, responsible for power-amplified activities in biological species necessary for locomotion, feeding, and defense have applications in soft robotics and prosthetics. Here, we report a bioinspired hydrogel synthesized through a free-radical polymerization reaction. By maintaining a balance between the hydrophilic and hydrophobic components, we obtain gels with an elastic modulus as high as 100 kPa, stretchability up to 800%, and resilience up to 98%. Such properties enable these gels to catapult projectiles. Furthermore, these gels achieve a retraction velocity of 16 m s–1 with an acceleration of 4 × 103 m s–2 when released from a stretched state, and these values are comparable to those observed in many biological species during a power amplification process. By utilizing and tuning the simple synthetic strategy used here, these gels can be used in soft robotics, prosthetics, and engineered devices where power amplification is desired. |
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ISSN: | 1944-8244 1944-8252 |
DOI: | 10.1021/acsami.0c08132 |