Antiswellable, Conductive, and Recyclable Coacervate Polyacrylamide/Tannic Acid Composite Hydrogel for Underwater Wearable Sensors AITranslate
Abstract AITranslate
Hydrogel-based sensors have attracted increasing attention as fascinating materials for various applications in biomedicine and bioelectronics. However, the application of strain sensors underwater remains a great challenge due to the swelling of hydrogels in an aqueous environment. Herein, we report a coacervate conductive polyacrylamide/tannic acid (PAM/TA) composite hydrogel with strong antiswellable properties. The PAM/TA composite hydrogel exhibits a good electrical performance, where the conductivity is found to be 2.7 × 10–4 S/cm, which is stable during recycling, with an excellent stretchability of 1000% at a tensile strength of 1.5 MPa. The composite hydrogel shows excellent biocompatibility and antiswellable behavior and maintains long-term stability underwater to monitor human movements. In addition, the environmentally friendly composite hydrogel can be recycled repeatedly. The PAM/TA composite hydrogel with excellent antiswelling and stability, good electrical performance, and remarkable stretchability has great potential for the applications as underwater wearable sensors.
KeyWords AITranslate
Basic Information:
DOI:https://doi.org/10.1021/acsapm.3c02433
Chinese Library Classification Number:
Citation Information:
Hydrogel-based sensors have attracted increasing attention as fascinating materials for various applications in biomedicine and bioelectronics. However, the application of strain sensors underwater remains a great challenge due to the swelling of hydrogels in an aqueous environment. Herein, we report a coacervate conductive polyacrylamide/tannic acid (PAM/TA) composite hydrogel with strong antiswellable properties. The PAM/TA composite hydrogel exhibits a good electrical performance, where the conductivity is found to be 2.7 × 10–4 S/cm, which is stable during recycling, with an excellent stretchability of 1000% at a tensile strength of 1.5 MPa. The composite hydrogel shows excellent biocompatibility and antiswellable behavior and maintains long-term stability underwater to monitor human movements. In addition, the environmentally friendly composite hydrogel can be recycled repeatedly. The PAM/TA composite hydrogel with excellent antiswelling and stability, good electrical performance, and remarkable stretchability has great potential for the applications as underwater wearable sensors.
quote
| GB/T 7714-2015 | [1] Zuwu Tang, Xinxing Lin, Meiqiong Yu, et al. ACS Applied Polymer Materials, 2024(6). DOI:10.1021/acsapm.3c02433. |
| MLA | [1] Zuwu Tang, et al., ACS Applied Polymer Materials, no. 6, 2024, https://doi.org/10.1021/acsapm.3c02433. |
| APA | [1] Zuwu Tang, Xinxing Lin, Meiqiong Yu, Ajoy Kanti Mondal, Liulian Huang, Lihui Chen, & Hui Wu. (2024). ACS Applied Polymer Materials(6). https://doi.org/10.1021/acsapm.3c02433 |
| IEEE | [1] Zuwu Tang, Xinxing Lin, Meiqiong Yu, Ajoy Kanti Mondal, Liulian Huang, Lihui Chen, and Hui Wu, ACS Applied Polymer Materials, no. 6, 2024, doi: 10.1021/acsapm.3c02433. keywords: {antiswellable;composite hydrogel;recyclable;sensors;underwater} |
