首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Crisscross-designed piezoresistive strain sensors with a cracked microtectonic architecture for direction-selective tensile perception
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Crisscross-designed piezoresistive strain sensors with a cracked microtectonic architecture for direction-selective tensile perception

机译:具有裂纹微调架构的裂纹设计的压阻式压阻传感器,用于方向选择性拉伸感知

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Flexible strain sensors are a key component of electronic skin (e-skin), a technology that is currently receiving considerable research attention with a view to future applications ranging from human healthcare monitoring to robotic skins and environmental risk detection. Here, we developed a highly sensitive, simple, and low-cost piezoresistive strain sensor, which acted as a flexible reactive resistor with a cracked microtectonic architecture that could be fabricated over a large area. In particular, our strain sensor recognizes the direction of tensile stimulation through its rational crisscross electrode design, allowing it to overcome some of the shortcomings of traditional flexible strain sensors. Under a given stress, the strain sensor developed here showed a variation in the relative resistance (Delta R/R-0) of up to 24-fold depending on the direction of the applied stress. For example, application of a 1% strain changed Delta R/R-0 by 0.11 when the strain was applied parallel to the direction of current flow, but by only 0.012 when the strain was applied perpendicular to that direction. Similarly, a 5% strain changed Delta R/R-0 by 0.85 and 0.062, and a 20% strain changed Delta R/R-0 by 2.37 and 0.098, depending on whether the strain was applied parallel or perpendicular to the current flow, respectively. In addition, Delta R/R-0 varied approximately linearly as a function of the strain over the operational range. The results thus show that the proposed sensor is sensitive to the direction in which an external stress is applied. Finally, we demonstrated that our sensor could be used to detect the bending of a human finger.
机译:柔性应变传感器是电子皮肤(E-SKIN)的关键组成部分,该技术目前正在接受相当多的研究关注,以期对未来的应用范围从人类医疗监测到机器人皮肤和环境风险检测。在这里,我们开发了一种高度敏感,简单,低成本的压阻性应变传感器,其充当柔性反应电阻,其具有裂纹的微调架构,可以在大面积上制造。特别地,我们的应变传感器通过其合理的纵横电极设计识别拉伸刺激的方向,使其克服传统柔性应变传感器的一些缺点。在给定的应力下,此处开发的应变传感器在施加应力的方向上显示出高达24倍的相对电阻(Delta R / R-0)的变化。例如,当应变被平行于电流方向施加时,施加1%应变的施加改变δR/ r-0,但当垂直于该方向施加菌株时,仅0.012。类似地,5%菌株改变δR/ r-0×0.85和0.062,并且20%应变改变了δR/ r-0,通过2.37和0.098,取决于应变是否平行或垂直于电流施加到电流。分别。另外,Delta R / R-0随着操作范围的应变的函数大致线性变化。因此,结果表明,所提出的传感器对应用外部应力的方向敏感。最后,我们证明我们的传感器可用于检测人体手指的弯曲。

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