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首页> 外文期刊>Advanced Functional Materials >MXene Composite and Coaxial Fibers with High Stretchability and Conductivity for Wearable Strain Sensing Textiles
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MXene Composite and Coaxial Fibers with High Stretchability and Conductivity for Wearable Strain Sensing Textiles

机译:具有高拉伸性和导电性的MXene复合材料和同轴纤维,用于穿戴式应变传感纺织品

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摘要

The integration of nanomaterials with high conductivity into stretchable polymer fibers can achieve novel functionalities such as sensing physical deformations. With a metallic conductivity that exceeds other solution-processed nanomaterials, 2D titanium carbide MXene is an attractive material to produce conducting and stretchable fibers. Here, a scalable wet-spinning technique is used to produce Ti3C2Tx MXene/polyurethane (PU) composite fibers that show both conductivity and high stretchability. The conductivity at a very low percolation threshold of approximate to 1 wt% is demonstrated, which is lower than the previously reported values for MXene-based polymer composites. When used as a strain sensor, the MXene/PU composite fibers show a high gauge factor of approximate to 12900 (approximate to 238 at 50% strain) and a large sensing strain of approximate to 152%. The cyclic strain sensing performance is further improved by producing fibers with MXene/PU sheath and pure PU core using a coaxial wet-spinning process. Using a commercial-scale knitting machine, MXene/PU fibers are knitted into a one-piece elbow sleeve, which can track various movements of the wearer's elbow. This study establishes fundamental insights into the behavior of MXene in elastomeric composites and presents strategies to achieve MXene-based fibers and textiles with strain sensing properties suitable for applications in health, sports, and entertainment.
机译:将具有高电导率的纳米材料集成到可拉伸聚合物纤维中可以实现新颖的功能,例如感应物理变形。 2D碳化钛MXene的金属电导率超过其他固溶处理的纳米材料,是生产导电和可拉伸纤维的诱人材料。此处,可扩展的湿纺技术用于生产同时具有导电性和高拉伸性的Ti3C2Tx MXene /聚氨酯(PU)复合纤维。结果表明,在非常低的渗透阈值(约1 wt%)下,电导率低于先前报道的基于MXene的聚合物复合材料的电导率。当用作应变传感器时,MXene / PU复合纤维显示出约12900的高应变系数(在50%应变时约238)和大传感应变约152%。通过使用同轴湿纺工艺生产带有MXene / PU护套和纯PU芯的光纤,可以进一步提高循环应变传感性能。使用商业规模的编织机,将MXene / PU纤维编织到一件式肘套中,该套可以跟踪穿着者肘部的各种运动。这项研究建立了对MXene在弹性体复合材料中行为的基本见解,并提出了获得具有适合于健康,体育和娱乐应用的应变传感特性的MXene基纤维和纺织品的策略。

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