首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Considerably improved water and oil washability of highly conductive stretchable fibers by chemical functionalization with fluorinated silane
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Considerably improved water and oil washability of highly conductive stretchable fibers by chemical functionalization with fluorinated silane

机译:通过用氟化硅烷化学官能化显着提高了高导电耐拉伸纤维的水和洗涤剂

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There have been significant improvements in conductive stretchable fibers and fabrics over the last few decades. However, the durability against washing (i.e., washability) still remains as a challenging issue hindering practical applications for wearable electronics. In this study, the water and oil washability of conductive stretchable nanocomposite fibers were significantly improved by the covalent functionalization with trichloro(1H,1H,2H,2H-perfluorooctyl)silane (FOTS). The highly conductive (similar to 14 600 S cm(-1)) stretchable AgPU fibers were synthesized by the wet spinning technology using flower-shaped silver nanoparticles and polyurethane (PU). The PU surface of the fiber was firstly treated by Ar plasma to induce reactive hydroxyl groups for the covalent binding with the silane molecules. The vapor-phase FOTS deposition was then carried out to synthesize FOTS-AgPU fibers. Both hydrophobicity and oleophobicity significantly improved after the functionalization. There was negligible change in the electrical conductivity, mechanical strength, and rupture strain of the FOTS-AgPU fiber after 8 thorough detergent water washing cycles, demonstrating almost perfect water washability with laundry detergent. The thermal conductivity slightly decreased by 10% since it was more challenging to maintain the phononic thermal transport than the electrical transport. The oil washability was also improved although perfect passivation could not be achieved. The FOTS layer could also be directly functionalized on the AgPU fabric, instead of the AgPU fibers, demonstrating the possibility of facile up-scale post-functionalization. The conductive stretchable fibers and fabric with improved water and oil washability may find immediate applications for wearable electronics.
机译:在过去的几十年中,导电可拉伸纤维和织物的显着改进。然而,耐用性耐用(即,可清洗性)仍然是一种充满活力电子产品的实际应用的具有挑战性的问题。在本研究中,通过用三氯(1H,1H,2H,2H-全氟辛基)硅烷(FOT)的共价官能化显着提高导电伸缩纳米复合纤维的水和油洗涤性。通过使用花状银纳米粒子和聚氨酯(PU),通过湿纺技术合成高导电(类似于14 600秒(-1))可拉伸的AGPU纤维。首先通过Ar等离子体处理纤维的PU表面,以诱导与硅烷分子的共价结合的反应性羟基。然后进行气相沉积沉积以合成FOTS-AGPU纤维。官能化后疏水性和疏水性均显着改善。在8个彻底的洗涤剂水洗循环后,FOTS-AGPU纤维的电导率,机械强度和破裂应变具有可忽略的变化,展示了与洗衣洗涤剂的几乎完美的水洗性。导热率略微降低10%,因为维持比电气传输更具挑战性。虽然无法实现完美的钝化,但也有所提高。本层也可以在AGPU织物上直接官能化,而不是AGPU纤维,证明了容易稳定的官能化后功能化的可能性。具有改善的水和油洗性的导电伸缩纤维和织物可以针对可穿戴电子设备的直接应用。

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