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具有高机械性能、导电性、保水性和抗冻性的双网络水凝胶,适用于可穿戴应变传感器。

Dual Network Hydrogel with High Mechanical Properties, Electrical Conductivity, Water Retention and Frost Resistance, Suitable for Wearable Strain Sensors.

作者信息

Miao Chen, Li Penghui, Yu Jiangdong, Xu Xuewen, Zhang Fang, Tong Guolin

机构信息

Jiangsu Co-Innovation Center of Efficient Processing and Utilization of Forest Resources, Jiangsu Provincial Key Laboratory of Pulp and Papermaking Science and Technology, Nanjing Forestry University, Nanjing 210037, China.

College of Food Science and Light Industry, Nanjing Tech University, Nanjing 211800, China.

出版信息

Gels. 2023 Mar 14;9(3):224. doi: 10.3390/gels9030224.

Abstract

With the progress of science and technology, intelligent wearable devices have become more and more popular in our daily life. Hydrogels are widely used in flexible sensors due to their good tensile and electrical conductivity. However, traditional water-based hydrogels are limited by shortcomings of water retention and frost resistance if they are used as the application materials of flexible sensors. In this study, the composite hydrogels formed by polyacrylamide (PAM) and TEMPO-Oxidized Cellulose Nanofibers (TOCNs) are immersed in LiCl/CaCl/GI solvent to form double network (DN) hydrogel with better mechanical properties. The method of solvent replacement give the hydrogel good water retention and frost resistance, and the weight retention rate of the hydrogel was 80.5% after 15 days. The organic hydrogels still have good electrical and mechanical properties after 10 months, and can work normally at -20 °C, and has excellent transparency. The organic hydrogel show satisfactory sensitivity to tensile deformation, which has great potential in the field of strain sensors.

摘要

随着科技的进步,智能可穿戴设备在我们的日常生活中越来越受欢迎。水凝胶因其良好的拉伸性和导电性而被广泛应用于柔性传感器。然而,传统的水基水凝胶作为柔性传感器的应用材料时,受到保水性和抗冻性缺点的限制。在本研究中,由聚丙烯酰胺(PAM)和TEMPO氧化纤维素纳米纤维(TOCNs)形成的复合水凝胶被浸入LiCl/CaCl/GI溶剂中,以形成具有更好机械性能的双网络(DN)水凝胶。溶剂置换法赋予水凝胶良好的保水性和抗冻性,水凝胶在15天后的重量保留率为80.5%。有机水凝胶在10个月后仍具有良好的电学和机械性能,可在-20°C下正常工作,并且具有优异的透明度。有机水凝胶对拉伸变形表现出令人满意的灵敏度,在应变传感器领域具有巨大潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a615/10048269/918de4c85f95/gels-09-00224-g001.jpg

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