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Flexible PVDF/nylon-11 electrospun fibrous membranes with aligned ZnO nanowires as potential triboelectric nanogenerators

机译:柔性PVDF /尼龙-11电纺纤维膜,具有对齐的ZnO纳米线作为潜在的摩擦纳米液体

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摘要

Triboelectric nanogenerator (TENG) is a novel energy harvester technology which attracted a great deal of attention in the area of self-powering electronic devices due to its high output power density. In this investigation, zinc oxide nanowires (ZnO NWs) were incorporated into the electrospun polyvinylidene fluoride (PVDF) and nylon 11 nanofibers to construct new TENGs based on PVDF-ZnO NWs/nylon-ZnO NWs. This study showed that ZnO NWs were aligned along the fiber axis during electrospinning. The cooperative and mutual alignment of polymer chains with ZnO NWs were also achieved in the fibers because of electrospinning, which promoted formation of the highly polar crystalline beta-phase of PVDF and delta'-phase of nylon. The maximum power density of ZnO NWs incorporated PVDF/nylon 11 triboelectric nanogenerator reached as high as 3.0 W/m(2) under an external load of 10-20 M Omega. The fabricated TENG with improved output performance can be directly used to lightening of more than 100 LEDs. Incorporation of ZnO NWs also improved both thermal stability and mechanical properties, such as tensile strength and elastic modulus of PVDF and nylon 11 fibrous membranes. This work disclosed a potent and sustainable power source for portable electronic devices.
机译:摩擦电纳米料(Teng)是一种新的能源收割机技术,其由于其高输出功率密度而引起了自动电子设备领域的大量关注。在该研究中,将氧化锌纳米线(ZnO NWS)掺入ExterportOm聚偏二氟乙烯(PVDF)和尼龙11纳米纤维中,以构建基于PVDF-ZnO NWS /尼龙-ZnONWS的新腾料。该研究表明,ZnO NWS在静电纺丝期间沿纤维轴对齐。在纤维中也可以在纤维中实现聚合物链与ZnO NW的协同和相互对准,因为静电纺丝,其促进了尼龙PVDF和Delta'-阶段的高极性结晶β相的形成。 ZnO NWS的最大功率密度掺入PVDF /尼龙11的摩擦纳米料理在10-20μmΩ的外部负荷下高达3.0W / m(2)。具有改进的输出性能的制造腾腾可以直接用于淡化100多个LED。 ZnO NW的掺入还改善了热稳定性和机械性能,例如PVDF和尼龙11纤维膜的拉伸强度和弹性模量。这项工作披露了便携式电子设备的有效和可持续的电源。

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