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首页> 外文期刊>Nanotechnology >Multidirectional flexible force sensors based on confined, self-adjusting carbon nanotube arrays
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Multidirectional flexible force sensors based on confined, self-adjusting carbon nanotube arrays

机译:基于狭窄的自调节碳纳米管阵列的多向柔性力传感器

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We demonstrate a highly sensitive force sensor based on self-adjusting carbon nanotube (CNT) arrays. Aligned CNT arrays are directly synthesized on silicon microstructures by a space-confined growth technique which enables a facile self-adjusting contact. To afford flexibility and softness, the patterned microstructures with the integrated CNTs are embedded in polydimethylsiloxane structures. The sensing mechanism is based on variations in the contact resistance between the facing CNT arrays under the applied force. By finite element analysis, proper dimensions and positions for each component are determined. Further, high sensitivities up to 15.05%/mN of the proposed sensors were confirmed experimentally. Multidirectional sensing capability could also be achieved by designing multiple sets of sensing elements in a single sensor. The sensors show long-term operational stability, owing to the unique properties of the constituent CNTs, such as outstanding mechanical durability and elasticity.
机译:我们展示了基于自调节碳纳米管(CNT)阵列的高敏感力传感器。通过空间限制的生长技术直接在硅微结构上直接合成对齐的CNT阵列,这使得能够进行容易的自调节接触。为了提供柔韧性和柔软度,具有集成CNT的图案化的微观结构嵌入聚二甲基硅氧烷结构中。传感机构基于所施加力下的面向CNT阵列之间的接触电阻的变化。通过有限元分析,确定每个组件的适当尺寸和位置。此外,实验证实了高达15.05%/ MN的高敏感性。还可以通过在单个传感器中设计多组传感元件来实现多向感测能力。传感器显示出长期的操作稳定性,由于组成CNT的独特性质,例如出色的机械耐久性和弹性。

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