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用于可穿戴应变传感器的高强、导电、耐冷冻的聚丙烯酰胺/聚(3,4-乙烯二氧噻吩):聚苯乙烯磺酸盐/纤维素纳米纤维水凝胶。

Strong, conductive, and freezing-tolerant polyacrylamide/PEDOT:PSS/cellulose nanofibrils hydrogels for wearable strain sensors.

机构信息

Tianjin Key Laboratory of Pulp and Paper, College of Light Industry Science and Engineering, Tianjin University of Science and Technology, Tianjin 300457, China.

Tianjin Key Laboratory of Pulp and Paper, College of Light Industry Science and Engineering, Tianjin University of Science and Technology, Tianjin 300457, China.

出版信息

Carbohydr Polym. 2023 Apr 1;305:120567. doi: 10.1016/j.carbpol.2023.120567. Epub 2023 Jan 9.

Abstract

Hydrogels with prominent flexibility, versatility, and high sensitivity play an important role in the design and fabrication of wearable sensors. In particular, these flexible conductive hydrogels exhibit elastic modulus that is highly compatible with human skin, demonstrating the great potential for flexible sensing. However, the preparation of high-performance hydrogel-based sensors that can restrain extreme cold conditions is still challenging. Herein, a novel anti-freezing composite hydrogel with superior conductivity based on polyacrylamide (PAM), LiCl, and PEDOT:PSS coated cellulose nanofibrils (PAM/PEDOT:PSS/CNF) is constructed. The addition of CNF increased the hydrogen bonding sites of the molecular chains in the micro, thus improving the mechanical strength and the conductivity of the hydrogel in the macro. The hydrogels achieve a high tensile strength of 0.19 MPa, compressive strength of 0.92 MPa, and dissipation energy of 41.9 kJ/m. Otherwise, LiCl increases the interactions between the colloidal phase and water molecules, endowing the hydrogels with excellent freezing tolerance. Specifically, the optimized hydrogel of 45 % LiCl exhibited stable mechanical properties at -40 °C. Finally, the composite hydrogel was used to assemble flexible sensors with high sensitivity of 10.3 MPa, which can detect a wide range of human movements and physiological activities.

摘要

具有突出柔韧性、多功能性和高灵敏度的水凝胶在可穿戴传感器的设计和制造中发挥着重要作用。特别是,这些柔性导电水凝胶表现出与人类皮肤高度兼容的弹性模量,展示了用于柔性传感的巨大潜力。然而,制备能够抑制极寒条件的高性能水凝胶基传感器仍然具有挑战性。在此,构建了一种基于聚丙烯酰胺(PAM)、LiCl 和 PEDOT:PSS 涂覆纤维素纳米纤维(PAM/PEDOT:PSS/CNF)的具有优异导电性的新型抗冻复合水凝胶。CNF 的添加增加了分子链在微观上的氢键结合位点,从而提高了水凝胶在宏观上的机械强度和导电性。水凝胶实现了 0.19 MPa 的高拉伸强度、0.92 MPa 的压缩强度和 41.9 kJ/m 的耗散能。此外,LiCl 增加了胶体相与水分子之间的相互作用,赋予水凝胶优异的耐冻性。具体而言,45%LiCl 的优化水凝胶在-40°C 下表现出稳定的机械性能。最后,该复合水凝胶被用于组装具有 10.3 MPa 高灵敏度的柔性传感器,可检测广泛的人体运动和生理活动。

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