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Highly Stretchable Strain Sensors Based on AgNWs/PV A Nanocomposite Hydrogels

机译:基于AgNWs / PV A纳米复合水凝胶的高拉伸应变传感器

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Here, we report the design, fabrication, and sensing application of highly flexible, conductive hydrogels by embedding conductive silver nanowires (AgNWs) into polyvinyl alcohol (PVA). Two different configurations have been designed including a single layer composite structure and a bilayer structure. The single layer composite was fabricated by direct mixing AgNWs with PVA solution of high concentration (20 wt%). In contrast, a bilayer structure consisted of a bottom PVA layer (20 wt%) and a top layer made of AgNWs and PVA solution of much lower concentration (6 wt%). Both structures exhibited outstanding mechanical properties with high stretchability up to 500% and 600% strain for single layer composite and bilayer structure, respectively. The bilayer hydrogel exhibited a sensitivity (gauge factor) of 0.23 in the strain range of 50 to 250% while the single layer composite structure showed a sensitivity of 0.1 in this range. Overall, the bilayer structure displayed better performance including higher electrical conductivity and piezoresistive sensitivity, larger stretchability, and more stable piezoresistivity. These findings make the PV A-AgNWs/PVA bilayer composite as a potential candidate for strain sensor application.
机译:在这里,我们通过将导电银纳米线(AgNWs)嵌入聚乙烯醇(PVA)中来报告高度柔性的导电水凝胶的设计,制造和传感应用。已经设计了两种不同的配置,包括单层复合结构和双层结构。通过将AgNWs与高浓度(20 wt%)的PVA溶液直接混合来制造单层复合材料。相反,双层结构由底部PVA层(20 wt%)和由AgNWs和浓度低得多(6 wt%)的PVA溶液制成的顶层组成。对于单层复合材料和双层结构,两种结构均显示出出色的机械性能,并具有高达500%和600%应变的高拉伸性。双层水凝胶在50%至250%的应变范围内显示出0.23的灵敏度(规格因子),而单层复合结构在此范围内显示出0.1的灵敏度。总体而言,双层结构显示出更好的性能,包括更高的电导率和压阻灵敏度,更大的拉伸性以及更稳定的压阻性。这些发现使PV A-AgNWs / PVA双层复合材料成为应变传感器应用的潜在候选者。

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