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| Preparation of Cellulose Nanofiber-based Antifreeze Double Network Gel and Its Strain Sensing Properties |
| Received:March 20, 2025 Revised:April 11, 2025 |
| DOI:10.11980/j.issn.0254-508X.2025.10.013 |
| Key Words:cellulose nanofibers double network gel antifreeze performance human movement monitoring |
| Fund Project:国家自然科学基金(22068017,22468028);云南省教育厅可降解塑料工程研究中心(KKPU202205001);云南省基础研究项目(202301BE070001-034,202401AU070141)。 |
| Author Name | Affiliation | Postcode | | HE Xin* | Faculty of Chemical Engineering, Kunming University of Science and Technology, Kunming, Yunnan Province, 650500 | 650500 | | HU Jianquan | Faculty of Chemical Engineering, Kunming University of Science and Technology, Kunming, Yunnan Province, 650500 | 650500 | | LIU Yuxin* | Faculty of Chemical Engineering, Kunming University of Science and Technology, Kunming, Yunnan Province, 650500 The Degradable Plastics Engineering Research Center of Yunnan Provincial Education Department, Kunming, Yunnan Province, 650000 | 650000 |
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| Abstract:In this study, a deep eutectic solvent (DES) was prepared by ethylene glycol (EG) and zinc chloride (ZnCl₂), and it was used as solvent replacing water. Acrylamide (AM) was used as a monomer, and polyacrylamide (PAM) was polymerized under UV irradiation. Then, the cellulose nanofiber (CNF) and polyvinyl alcohol (PVA) were introduced to enhance mechanical properties, resulting in a DES-PVA/PAM/CNF antifreeze double network gel. The results showed that the prepared DES-PVA/PAM/CNF antifreeze double network gels exhibited the best antifreeze performance with freezing point as low as -73.03 ℃ when the molar ratio of ZnCl2 to EG was 1∶5. Further investigation of the effects of CNF content on the gel properties revealed that the best overall performances were achieved when the CNF content was 0.4% (based on the mass of EG). At normal temperature, the fracture strength of the gel was up to 0.94 MPa, and the strain at break was 844.5%, at low temperature, the fracture strength was still maintained at 0.92 MPa, exhibiting excellent adaptability at low temperatures. In addition, after assembling the gel as a strain sensor, the monitoring of human skin-attached motion was successfully realized. |
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