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Fabrication and Performance Evaluation of Highly Sensitive Flexible Strain Sensors with Aligned Silver Nanowires

机译:对准银纳米线的高灵敏度柔性应变传感器的制备与性能评估

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摘要

In this study, we fabricated strain sensors by aligning silver nanowires and transferring them with polydimethylsiloxane (PDMS) and compared the performances of the fabricated strain sensors along the alignment direction. Two types of flexible strain sensors embedded with the aligned silver nanowires were fabricated: one in the longitudinal direction, which is the same as the alignment direction, and the other in the lateral direction, which is perpendicular to the alignment direction. We then evaluated their properties. The proposed longitudinally aligned strain sensor showed the maximum sensitivity (gauge factor (GF) = 89.99) under 25% tensile conditions, which is 7.08 times higher than the sensitivity (GF = 12.71) shown by the laterally aligned strain sensor under 25% tensile conditions. This finding confirmed that the alignment direction of silver nanowires influences the sensitivity of flexible strain sensors. Furthermore, this study demonstrates that the laterally aligned strain sensor ( > 60%) can be used in wearable devices because it satisfies the required strain range ( > 50%). Since the strain sensors were fabricated using the temperature-controlled dip coating process, they can be produced at low cost in large quantities, and thus they have advantages for commercialization. These characteristics will be applicable to various flexible devices as well as to flexible strain sensors.
机译:在这项研究中,我们通过对准银纳米线并将其转移到聚二甲基硅氧烷(PDMS)中来制造应变传感器,并沿对准方向比较了所制造的应变传感器的性能。制造了两种类型的嵌入有对准的银纳米线的柔性应变传感器:一种在纵向上与对准方向相同,另一种在横向上垂直于对准方向。然后,我们评估了它们的属性。拟议中的纵向对准应变传感器在25%拉伸条件下显示出最大灵敏度(仪表系数(GF)= 89.99),比横向对准应变传感器在25%拉伸条件下显示的灵敏度(GF = 12.71)高7.08倍。这一发现证实了银纳米线的排列方向会影响柔性应变传感器的灵敏度。此外,这项研究表明,横向对齐的应变传感器(> 60%)可满足可穿戴设备要求的应变范围(> 50%),因此可用于可穿戴设备。由于应变传感器是使用温度控制浸涂工艺制造的,因此可以低成本大量生产,因此具有商业化的优势。这些特性将适用于各种柔性设备以及柔性应变传感器。

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