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A Sandwich-Structured Piezoresistive Sensor with Electrospun Nanofiber Mats as Supporting, Sensing, and Packaging Layers

机译:带有Electrom an纳米纤维垫的夹层结构压阻传感器,作为支撑,传感和包装层

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摘要

Electrospun nanofiber mats have been used as sensing elements to construct piezoresistive devices due to their large surface area and high porosity. However, they have not been utilized as skin-contact supporting layers to package conductive nanofiber networks for the fabrication of piezoresistive sensors. In this work, we developed a sandwich-structured pressure sensor, which can sensitively monitor human motions and vital signs, with electrospun nanofiber mats as supporting, sensing, and packaging layers. The nanofiber mats were prepared by electrospinning with biocompatible poly (l-lactide) (PLA), silk fibroin (SF), and collagen (COL) as raw materials. The synthesized PLA–SF–COL mat possesses a non-woven structure with a fiber diameter of 122 ± 28 nm and a film thickness of 37 ± 5.3 μm. Polypyrrole (PPy) nanoparticles were grown in-situ on the mat to form a conductive layer. After stacking the pristine and conductive mats to form a PLA–SF–COL mat/(PPy-coated mat)2 structure, another layer was electrospun to pack the multilayers for the construction of a sandwich-structured piezoresistive sensor. The as-prepared device can sensitively detect external pressures caused by coin loading and finger tapping/pressing. It can also tolerate more than 600 times of pressing without affecting its sensing capability. The human body-attached experiments further demonstrate that the sensor could real-time monitor finger/arm bending, arterial pulse, respiration rate, and speaking-caused throat vibration. The electrospinning-based fabrication may be used as a facile and low-cost strategy to produce flexible piezoresistive sensors with excellent skin-compatibility and great pressure sensing capability.
机译:电纺纳米纤维垫已被用作传感元件,以构建由于其大的表面积和高孔隙率的压阻装置。然而,它们尚未用作皮肤接触支撑层,以将导电纳米恐怖网连接用于制造压阻传感器。在这项工作中,我们开发了一种三明治结构压力传感器,可以敏感地监测人类运动和生命体征,电纺纳米纤维垫作为支撑,感测和包装层。通过用生物相容性聚(L-丙交酯)(PLA),丝素蛋白(SF)和胶原(COL)作为原料来制备纳米纤维垫。合成的PLA-SF-COL MAT具有纤维直径为122±28nm的非织造结构,薄膜厚度为37±5.3μm。在垫子上生长聚吡咯(PPY)纳米颗粒以形成导电层。在堆叠原始和导电垫以形成PLA-SF-COL垫/(PPY涂层垫)2结构之后,另一层是ElectrompUp以包装多层以构建夹层结构的压阻传感器。由制备的装置可以灵敏地检测由硬币加载和手指敲击/压制引起的外部压力。它还可以耐受超过600次,而不会影响其传感能力。人体安全的实验进一步证明了传感器可以实时监测手指/手臂弯曲,动脉脉冲,呼吸速率和说话引起的喉咙振动。基于静电纺丝的制造可以用作容易和低成本的策略,以产生具有优异的皮肤兼容性和高压传感能力的柔性压阻传感器。

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