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Flexible Graphitized Polyacrylonitrile Nanofiber Bundles for Strain Sensors

机译:用于应变传感器的柔性石墨化聚丙烯腈纳米纤维束

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This work reports the use of graphitized Polyacrylonitrile (PAN) nanofiber bundle for strain sensing applications. Strain sensors employing piezoresistive properties of carbon nanofiber is relatively new compared to conventional piezoelectric electrospun nanofiber based devices. The graphitization of PAN nanofiber bundles annealed at 500°C, 750°C, and 950°C are studied by means of spectroscopic analysis techniques including Raman and X-ray photoelectron spectroscopy (XPS). The nanofiber bundle annealed at 750°Cexhibits disordered (D) and ordered (G) peaks similar to the nanofiber bundle annealed at 950°C. This is confirmed by XPS analysis which shows the asymmetric C1s peak at 284.8 eV. Raman analysis has also been performed on the as-spun, stabilized and annealed samples to show the change in D and G peaks. Finally, a strain sensor utilizing the nanofiber bundle annealed at 950°C is fabricated which is sensitive enough to detect overall bending of less than 3° without the use of any external amplifier circuit.
机译:该工作报告了石墨化聚丙烯腈(PAN)纳米纤维束用于应变感应应用。与传统的压电电纺纳米纤维的装置相比,采用碳纳米纤维的压阻性能的应变传感器相对较新。通过在包括拉曼和X射线光电子能谱(XPS)的光谱分析技术,研究了在500℃,750℃和950℃下退火的PAN纳米纤维束的石墨化。在750°的纳米纤维束在750°退火(d)和(d)和类似于在950℃的纳米纤维束时的峰值(g)峰值。这通过XPS分析证实,显示了284.8 eV的非对称C1S峰值。还已经对AS-Spun,稳定和退火的样品进行了拉曼分析,以显示D和G峰的变化。最后,使用在950℃下退火的纳米纤维束的应变传感器是制造的,其足够敏感,以便在不使用任何外部放大器电路的情况下检测小于3°的总弯曲。

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