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Carbon Nanotubes/Hydrophobically Associated Hydrogels as Ultrastretchable, Highly Sensitive, Stable Strain, and Pressure Sensors

机译:碳纳米管/疏水相关的水凝胶作为超微开,高度敏感,稳定的应变和压力传感器

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Conductive hydrogels have become one of the most promising materials for skin-like sensors because of their excellent biocompatibility and mechanical flexibility. However, the limited stretchability, low toughness, and fatigue resistance lead to a narrow sensing region and insufficient durability of the hydrogel-based sensors. In this work, an extremely stretchable, highly tough, and anti-fatigue conductive nanocomposite hydrogel is prepared by integrating hydrophobic carbon nanotubes (CNTs) into hydrophobically associated polyacrylamide (HAPAAm) hydrogel. In this conductive hydrogel, amphiphilic sodium dodecyl sulfate was used to ensure uniform dispersion of CNTs in the hydrogel network, and hydrophobic interactions between the hydrogel matrix and the CNT surface formed, greatly improving the mechanical properties of the hydrogel. The obtained CNTs/HAPAAm hydrogel showed excellent stretchability (ca. 3000%), toughness (3.42 MJ m(-3)), and great anti-fatigue property. Moreover, it exhibits both high tensile strain sensitivity in the wide strain ranges (gauge factor = 4.32, up to 1000%) and high linear sensitivity (0.127 kPa(-1)) in a large-pressure region within 0-50 kPa. The CNTs/HAPAAm hydrogel-based sensors can sensitively and stably detect full-range human activities (e.g., elbow rotation, finger bending, swallowing motion, and pronouncing) and handwriting, demonstrating the CNTs/HAPAAm hydrogel's potential as the wearable strain and pressure sensors for flexible devices.
机译:由于其优异的生物相容性和机械柔性,导电水凝胶已成为皮肤状传感器最有希望的材料之一。然而,有限的拉伸性,低韧性和疲劳电阻导致狭窄的传感区域和基于水凝胶的传感器的耐久性不足。在这项工作中,通过将疏水性碳纳米管(CNT)与疏水相关的聚丙烯酰胺(HaPaAM)水凝胶将疏水性碳纳米管(CNT)整合到疏水性相关的聚丙烯酰胺(Hapaam)水凝胶中,制备极其可拉伸,高强硬和抗疲劳导电纳米复合水凝胶。在该导电水凝胶中,使用两亲硫酸钠硫酸钠来确保CNT在水凝胶网络中的均匀分散,水凝胶基质与CNT表面之间的疏水相互作用大大提高了水凝胶的机械性能。得到的CNT / Hapaam水凝胶显示出优异的拉伸性(约3000%),韧性(3.42mJ m(-3))和抗疲劳性能。此外,它在0-50kPa内的大压区域中表现出宽应变范围(仪表因子= 4.32,高达1000%)和高线性敏感度(0.127kPa(-1))中的高拉伸应变敏感性。基于CNT / Hapaam水凝胶的传感器可以敏感地且稳定地检测全范围人类活动(例如,肘部旋转,手指弯曲,吞咽运动和发音和发音,并表现为可穿戴应变和压力传感器的CNT / Hapaam Hydrogel的潜力适用于灵活的设备。

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