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Tough, Antifreezing, and Piezoelectric Organohydrogel as a Flexible Wearable Sensor for Human-Machine Interaction

机译:坚韧、抗冻和压电有机水凝胶作为用于人机交互的柔性可穿戴传感器

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Piezoelectric hydrogel sensors are becoming increasingly popular for wearable sensing applications due to their high sensitivity, self-powered performance, and simple preparation process. However, conventional piezoelectric hydrogels lack antifreezing properties and are thus confronted with the liability of rupture in low temperatures owing to the use of water as the dispersion medium. Herein, a kind of piezoelectric organohydrogel that integrates piezoelectricity, low-temperature tolerance, mechanical robustness, and stable electrical performance is reported by using poly-(vinylidene fluoride) (PVDF), acrylonitrile (AN), acrylamide (AAm), p-styrenesulfonate (NaSS), glycerol, and zinc chloride. In detail, the dipolar interaction of the PVDF chain with the PAN chain facilitates the crystal phase transition of PVDF from the alpha to beta phase, which endows the organohydrogels with a high piezoelectric constant d (33) of 35 pC/N. In addition, the organohydrogels are highly ductile and can withstand significant tensile and compressive forces through the synergy of the dipolar interaction and amide hydrogen bonding. Besides, by incorporating glycerol and zinc chloride, the growth of ice crystals is inhibited, allowing the organohydrogels to maintain stable flexibility and sensitivity even at -20 C-degrees. The real-time monitoring of the pulse signal for up to 2 min indicates that the gel sensor has stable sensitivity. It is believed that our organohydrogels will have good prospects in future wearable electronics.
机译:压电水凝胶传感器由于其高灵敏度、自供电性能和简单的制备过程,在可穿戴传感应用中越来越受欢迎。然而,传统的压电水凝胶缺乏抗冻性能,因此由于使用水作为分散介质,因此在低温下容易破裂。本文报道了一种通过使用聚偏二氟乙烯 (PVDF)、丙烯腈 (AN)、丙烯酰胺 (AAm)、对苯乙烯磺酸盐 (NaSS)、甘油和氯化锌制备了一种集压电、耐低温、机械坚固性和稳定电性能于一身的压电有机氢凝胶。具体来说,PVDF 链与 PAN 链的偶极相互作用促进了 PVDF 从 α 相到 β 相的晶相转变,这使有机氢凝胶具有 35 pC/N 的高压电常数 d (33)。此外,有机氢凝胶具有很高的延展性,可以通过偶极相互作用和酰胺氢键的协同作用承受显着的拉伸和压缩力。此外,通过掺入甘油和氯化锌,抑制了冰晶的生长,使有机氢凝胶即使在 -20 摄氏度下也能保持稳定的柔韧性和灵敏度。实时监测脉冲信号长达 2 分钟表明凝胶传感器具有稳定的灵敏度。相信我们的有机氢凝胶在未来的可穿戴电子产品中将有很好的前景。

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