Lu Pengpeng, Xu Jingyang, Liu Shuyan, Fu Lili, Wu Shengxian, Liu Ze, Hou Tu, Liu He, Huang Dongyan
College of Engineering and Technology, Jilin Agricultural University, Changchun, 130118, People's Republic of China.
College of Information Technology, Jilin Agricultural University, Changchun, 130118, People's Republic of China.
Sci Rep. 2025 Mar 1;15(1):7335. doi: 10.1038/s41598-025-86541-7.
The application of flexible hydrogel sensors in extreme environments, such as low temperatures, underwater, or significant mechanical deformations, poses considerable challenges. Here, we present a simple one-pot method to fabricate ultra-tough, swelling- and freezing-resistant conductive organohydrogels without external conductive and freeze-resistant fillers. During gelation, by-products (CHNHCl, KCl) provide both conductivity and antifreeze properties, thus eliminating compatibility issues and dispersion challenges associated with external fillers. The resulting gel exhibits super toughness, with tensile strength reaching 10.2 MPa and stretchability up to 800% in the dry state. Following covalent crosslinking, the gel demonstrates excellent anti-swelling properties, with a swelling ratio of only 15.4% after 24 h of water immersion, while maintaining a tensile strength of 5.8 MPa and an elongation of up to 1000%. When fabricated into flexible sensors, these gels display stable electrical responsiveness and desired Gauge Factor (0.58-2.25), effectively detecting limb movements. Furthermore, the gel's superior resistance to freezing and swelling ensures reliable signal stability under both - 20 °C and underwater conditions. These combined properties render the conductive gel a promising candidate for flexible sensing components in robotic and bionic applications.
柔性水凝胶传感器在极端环境(如低温、水下或显著机械变形)中的应用面临着巨大挑战。在此,我们提出一种简单的一锅法来制备超坚韧、抗肿胀和抗冻的导电有机水凝胶,无需外部导电和抗冻填料。在凝胶化过程中,副产物(CHNHCl、KCl)兼具导电性和抗冻性,从而消除了与外部填料相关的相容性问题和分散挑战。所得凝胶具有超强韧性,在干燥状态下拉伸强度达到10.2MPa,拉伸率高达800%。经过共价交联后,该凝胶表现出优异的抗肿胀性能,水浸24小时后的溶胀率仅为15.4%,同时保持5.8MPa的拉伸强度和高达1000%的伸长率。当制成柔性传感器时,这些凝胶显示出稳定的电响应性和所需的应变系数(0.58 - 2.25),能有效检测肢体运动。此外,该凝胶卓越的抗冻和抗肿胀性能确保了在-20°C和水下条件下都具有可靠的信号稳定性。这些综合性能使导电凝胶成为机器人和仿生应用中柔性传感组件的有前途的候选材料。