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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Ultra-flexibility, robust waterproof and breathability of polyvinylidene fluoride membrane blended silver nitrate for electronic skin substrate
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Ultra-flexibility, robust waterproof and breathability of polyvinylidene fluoride membrane blended silver nitrate for electronic skin substrate

机译:超柔韧性,鲁棒性防水和透气性和聚偏二氟乙烯膜混合硝酸银硝酸银

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摘要

Flexibility, waterproof and breathability of substrates are the key issues restricting the application of electronic skin. Composite nanofibrous membranes (CNFMs) as substrates of electronic skin are prepared from polyvinylidene fluoride and silver nitrate blended solution by electrospinning technique. The microstructure and performances of the CNFMs are characterized by scanning electron microscopy, x-ray diffraction, capillary pore size analyzer, gravimetric method, water vapor permeability tester, optical contact angle tester, water permeability tester, intelligent electronic strength tester, hand-held electronic thickness meter and seveneasy conductivity meter. The results indicate that with the introduction of silver nitrate, the waterproof and breathability of CNFMs are balanced and optimized. The moisture permeability increases by 22%-69% from 2915.9 g center dot m(-2) center dot 24 h(-1) of pristine nanofibrous membrane (PNFM) to 3801.2-4151.5 g center dot m(-2) center dot 24 h(-1) of CNFMs and the hydraulic pressure decreases from 23.4 kPa to 21.6-16.5 kPa. However, the change of contact angle is irregular, which depends on the presence of like lotus-leaf-papillae morphology on fiber surface. The tensile strength of CNFMs decreases greatly and the elongation increases by 3-8 times from 7.7% of PNFM to 25.1%-63.2% of the CNFMs. The improvement of CNFMs flexibility is attributed to the hierarchical roughness of nanofiber surface, the unlock bonding between fibers and various combination forms of silver particles in CNFMs. Thus it was suitable to be applied as the substrate of electronic skin.
机译:基材的灵活性,防水和透气性是限制电子皮肤应用的关键问题。通过静电纺丝技术由聚偏二氟乙烯和硝酸银混合溶液制备复合纳米纤维膜(CNFMS)作为电子皮肤的基板。 CNFMS的微观结构和性能通过扫描电子显微镜,X射线衍射,毛细血管孔径分析仪,重力法,水蒸气渗透性测试仪,光学接触角测试仪,智能电子强度测试仪,手持电子厚度计和七种电导率计。结果表明,随着硝酸银银,CNFMS的防水和透气性平衡和优化。透湿性在原始纳米纤维膜(PNFM)的2915.9g中心点M(-2)中心点24h(-1)至3801.2-4151.5g中心点M(-2)中心点24增加22%-69%-69%-69% CNFMS的H(-1)和液压从23.4kPa降至21.6-16.5kPa。然而,接触角的变化是不规则的,这取决于在纤维表面上存在莲花叶片形态的存在。 CNFMS的拉伸强度大大降低,伸长率从PNFM的7.7%的7.7%增加3-8倍至CNFMS的25.1%-63.2%。 CNFMS柔韧性的改善归因于纳米纤维表面的分层粗糙度,纤维之间的解锁键合和CNFMS中的银颗粒之间的各种组合形式。因此,适用于电子皮肤的基材。

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