College of Chemistry and Pharmaceutical Engineering, Jilin Institute of Chemical Technology, Jilin 132022, China.
College of Materials Science and Engineering, Jilin Institute of Chemical Technology, Jilin City 132022, Jilin Province, China.
Int J Biol Macromol. 2024 Nov;280(Pt 2):135909. doi: 10.1016/j.ijbiomac.2024.135909. Epub 2024 Sep 21.
The design of polyelectrolyte hydrogel with unique tensile and adhesive properties which can be applied across disciplines has gradually become a popular trend. However, the phenomenon of global warming and the emergence of extreme weather, it still faces some urgent problems that should be solved, such as the optimal utilization of polyelectrolyte hydrogel across a wide range of temperatures. Herein, a wide temperature sensitivity and conductivity hydrogel based on sodium alginate, acrylamide and N-isopropylacrylamide was constructed, which exhibited excellent adhesion and temperature conductivity. It is worth noting that after the inclusion of CaCO and NaCl in the hydrogel, the hydrogel showed excellent tensile properties (fracture strain >2000 %). Within a wide temperature range (-15-50 °C), it exhibits exceptional electrical conductivity (2.75 S ∗ m) and sensitivity (GF = 8.76 under high strain). This innovative intelligent polyelectrolyte hydrogel provides suitable strategy for flexible sensors, smart wearable devices and medical monitoring equipment.
具有独特拉伸和粘附性能的聚电解质水凝胶的设计可应用于多个领域,已逐渐成为一种流行趋势。然而,全球变暖现象和极端天气的出现,仍然面临着一些亟待解决的问题,例如聚电解质水凝胶在广泛温度范围内的最佳利用。在此,构建了一种基于海藻酸钠、丙烯酰胺和 N-异丙基丙烯酰胺的宽温敏性和导电性水凝胶,其表现出优异的粘附性和温度导电性。值得注意的是,在水凝胶中加入 CaCO 和 NaCl 后,水凝胶表现出优异的拉伸性能(断裂应变>2000%)。在较宽的温度范围内(-15-50°C),它表现出优异的电导率(2.75 S ∗ m)和灵敏度(高应变速率下的 GF=8.76)。这种创新的智能聚电解质水凝胶为柔性传感器、智能可穿戴设备和医疗监测设备提供了合适的策略。