高灵敏度MXene基纤维传感器的制备及性能
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江南大学 纺织科学与工程学院

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TQ342

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国家自然科学基金(21975107)


Preparation and performance of highly sensitive MXene-based fiber sensors
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College of Textile Science and Engineering,Jiangnan University

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    摘要:

    为了解决可穿戴应变传感器拉伸性与导电性无法兼顾的问题,以热塑性聚氨酯(TPU)为基底,以原位氢氟酸刻蚀法制备的过渡金属碳化物/氮化物(MXene)纳米片为导电材料,经湿法纺丝制得MXene-TPU导电纤维(MTF)。采用SEM、EDS表征,结合电动拉伸/压缩、材料力学、人体运动监测等试验,考察了MXene负载量对MTF结构形貌、力学性能、电导率以及在不同拉伸应变状态下的传感性能的影响。结果表明,通过在TPU内部建立的MXene导电网络,赋予了MTF高应变灵敏系数(在120%应变下为2930)。MXene的引入提高了MTF的热稳定性,其热分解温度从聚氨酯纤维(TF)的360 ℃提高到400 ℃;MXene在纤维表面及内部形成连续导电通路,赋予了纤维良好的导电性(电导率141.54 S/m);MXene也增强了MTF纤维的模量,MXene负载量为21.74%的MTF2,其50%应变时的应力(σ50)比TF增大了1.3倍,具备一定的拉伸应变恢复性;MTF2通过表达电阻变化率的不同来对应人体关节运动形式,可用于人体运动监测。

    Abstract:

    To address the challenge of balancing stretchability and conductivity in wearable strain sensors, a conductive fiber termed MXene-TPU (MTF) has been developed. This fiber is based on thermoplastic polyurethane (TPU) as the substrate, with Ti3C2Tx MXene nanosheets prepared through an in-situ hydrofluoric acid etching process serving as the conductive material. The MXene-TPU conductive fiber is fabricated by wet spinning. Using SEM and EDS characterization, combined with experimental techniques such as electromechanical stretching/compression, materials mechanics, and human motion monitoring, we investigated the influence of MXene loading on the structure, morphology, mechanical properties, and conductivity of MTF. Additionally, we explored the sensing performance under different tensile strain conditions. The results demonstrate that the establishment of a MXene conductive network within TPU imparts a high gauge factor to the MXene-TPU conductive fiber (MTF), reaching 2930 at 120% strain. The incorporation of MXene enhances the thermal stability of the MXene-TPU conductive fiber (MTF), increasing its thermal decomposition temperature from 360°C, as observed in polyurethane fiber (TF), to 400°C. MXene forms continuous conductive pathways on both the surface and within the fiber, imparting good conductivity to the fiber (electrical conductivity of 141.54 S/m). MXene also enhances the modulus of the MXene-TPU conductive fiber (MTF). For MTF2 with a MXene loading of 21.74%, the stress at 50% strain (σ50) is 1.3 times higher than that of TF, indicating a certain level of tensile strain recovery. MTF2 corresponds to different human joint movements by expressing varying rates of resistance changes, making it suitable for human motion monitoring.

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宋理阳,韩玮屹,彭军,王潮霞.高灵敏度MXene基纤维传感器的制备及性能[J].精细化工,2024,41(10):

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  • 收稿日期:2023-11-08
  • 最后修改日期:2024-01-24
  • 录用日期:2023-12-13
  • 在线发布日期: 2024-09-30
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