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Oxidation-Driven Shape-Shifting Rubber Composites by Metal–Polyphenol Bonds AITranslate

Aerospace Research Institute of Materials and Processing Technology;Academy of Aerospace Propulsion Technology, Xi’an 710100;Aerospace Research Institute of Materials and Processing Technology;Aerospace Research Institute of Materials and Processing Technology;Aerospace Research Institute of Materials and Processing Technology;Aerospace Research Institute of Materials and Processing Technology;Aerospace Research Institute of Materials and Processing Technology
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Publisher: ACS
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Abstract AITranslate

Shape-shifting materials have attracted a lot of attention owing to important roles of geometric shapes in engineering applications. But it is still a challenge to explore simple and effective strategies to shift their shapes in association with time. Herein, we have reported a simple method to prepare shape-shifting composites by introducing metal–polyphenol coordination bonds to cross-link rubber. As special stimuli, oxidation stimuli were used to trigger cross-linking network variations of rubber composites through self-oxidation reaction of polyphenols. As the oxidation time increased, the single cross-linking network in rubber composites transited to hybrid networks composed of covalent and coordination ones. Accordingly, oxidation allowed temporal tuning of material properties, including chemical composition, morphology, glassy temperature, mechanical properties, and elasticity. Shape-memory performance showed that the shape recovery speed increased with oxidation time in the range of 20 days of oxidation owing to the increase of covalent cross-linking bonds. We demonstrated that the unique attribute is beneficial in sequent shape-memory products after orderly assembling the oxidized samples. Therefore, the metal–polyphenol cross-linking networks are possibly important to fabricate shape-shifting rubber composites for their time-dependent applications, such as 4D printing technology.

KeyWords AITranslate

oxidation rubber composites shapememory polymer metal–polyphenol bonds shapeshifting material crosslinking network
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Basic Information:

DOI:https://doi.org/10.1021/acsapm.3c02573

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Citation Information:

Shape-shifting materials have attracted a lot of attention owing to important roles of geometric shapes in engineering applications. But it is still a challenge to explore simple and effective strategies to shift their shapes in association with time. Herein, we have reported a simple method to prepare shape-shifting composites by introducing metal–polyphenol coordination bonds to cross-link rubber. As special stimuli, oxidation stimuli were used to trigger cross-linking network variations of rubber composites through self-oxidation reaction of polyphenols. As the oxidation time increased, the single cross-linking network in rubber composites transited to hybrid networks composed of covalent and coordination ones. Accordingly, oxidation allowed temporal tuning of material properties, including chemical composition, morphology, glassy temperature, mechanical properties, and elasticity. Shape-memory performance showed that the shape recovery speed increased with oxidation time in the range of 20 days of oxidation owing to the increase of covalent cross-linking bonds. We demonstrated that the unique attribute is beneficial in sequent shape-memory products after orderly assembling the oxidized samples. Therefore, the metal–polyphenol cross-linking networks are possibly important to fabricate shape-shifting rubber composites for their time-dependent applications, such as 4D printing technology.

quote

GB/T 7714-2015 [1] Jiajia Peng, Junhong Qin, Huadong Feng, et al. ACS Applied Polymer Materials, 2024(6). DOI:10.1021/acsapm.3c02573.
MLA [1] Jiajia Peng, et al., ACS Applied Polymer Materials, no. 6, 2024, https://doi.org/10.1021/acsapm.3c02573.
APA [1] Jiajia Peng, Junhong Qin, Huadong Feng, Hao Wang, Bo Wang, Xinpan Li, & Jihua Zhang. (2024). ACS Applied Polymer Materials(6). https://doi.org/10.1021/acsapm.3c02573
IEEE [1] Jiajia Peng, Junhong Qin, Huadong Feng, Hao Wang, Bo Wang, Xinpan Li, and Jihua Zhang, ACS Applied Polymer Materials, no. 6, 2024, doi: 10.1021/acsapm.3c02573. keywords: {oxidation;rubber composites;shapememory polymer;metal–polyphenol bonds;shapeshifting material;crosslinking network}