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Preparation and tensile conductivity of carbon nanotube/polyurethane nanofiber conductive films based on the centrifugal spinning method

机译:基于离心纺丝法的碳纳米管/聚氨酯纳米纤维导电膜的制备及拉伸导电性能

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摘要

Flexible conductive thin films have recently become a research area of focus in both academia and industry. In this study, a method of preparing nanofiber conductive films by centrifugal spinning is proposed. Polyurethane (PU) nanofiber films were prepared by centrifugal spinning as the flexible substrate film, and carbon nanotubes (CNTs) were used as the conducting medium, to obtain CNTs/PU nanofiber conductive films with good conductivity and elasticity. The effects of different CNT concentrations on the properties of the nanofiber films were investigated. It was found that the conductivity of the nanofiber conductive films was optimal when an impregnation concentration of 9 CNTs was used in the stretching process. Cyclic tensile resistance tests showed that the nanofiber conductive films have good durability and repeatability. Physical and structural property analysis of the CNT/PU conductive films indicate that the adsorption of the CNTs on the PU surface was successful and the CNTs were evenly dispersed on the surface of the matrix. Moreover, the CNTs improved the thermal stability of the PU membrane. The CNT/PU conductive films were pasted onto a human finger joint, wrist joint, and Adam's apple to test the detection of movement. The results showed that finger bending, wrist bending, and laryngeal prominence movement all caused a change in resistance of the conductive film, with an approximately linear curve. The results indicate that the CNT/PU nanofiber conductive film developed in this study can be used to test the motion of human joints.
机译:柔性导电薄膜最近已成为学术界和工业界关注的研究领域。本研究提出了一种离心纺丝制备纳米纤维导电膜的方法。采用离心纺丝法制备聚氨酯(PU)纳米纤维薄膜作为柔性基底薄膜,以碳纳米管(CNTs)为导电介质,获得导电性和弹性良好的CNTs/PU纳米纤维导电膜。研究了不同碳纳米管浓度对纳米纤维薄膜性能的影响。研究发现,在拉伸过程中,当浸渍浓度为9% CNTs时,纳米纤维导电膜的导电性最佳。循环拉伸阻力测试表明,纳米纤维导电膜具有良好的耐久性和重复性。对CNT/PU导电膜的物理结构性能分析表明,CNTs在PU表面的吸附成功,CNTs均匀分散在基体表面。此外,碳纳米管还提高了聚氨酯膜的热稳定性。将CNT/PU导电膜粘贴到人体手指关节、腕关节和喉结上,以测试对运动的检测。结果表明,手指弯曲、手腕弯曲和喉部突出运动均引起导电膜电阻的变化,呈近似线性曲线;结果表明,本研究开发的CNT/PU纳米纤维导电膜可用于测试人体关节的运动。

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