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All-fiber transparent piezoelectric harvester with a cooperatively enhanced structure

机译:具有协同增强结构的全纤维透明压电收割机

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摘要

In this paper, we demonstrated a highly-flexible all-fiber based transparent piezoelectric harvester (ATPH) by using the direct-write, near-field electrospinning (NFES) technique and polyvinylidene fluoride (PVDF) microano fibers (MNFs) as source materials. Here, we comprehensively show that transferred high performance transparent electrodes with Au-coated nanowire (NW) electrodes can be obtained using a facile and scalable combined fabrication route of both electrospinning and sputtering processes. Au-coated MNFs of a. c. 110 nm thick can significantly reduce junction resistance, which results in high transmittance (90%) at low sheet resistance (175 O sq(-1)). The Au-coated MNFs electrodes also show great flexibility and stretchability, which easily surpass the brittleness of indium tin oxide (ITO) films. Further improvement in ATPH performance was realized by rolling the device into a cylindrical shape, resulting in an increase in power output due to the cooperatively enhanced effect. The rolled ATPH with 0.34 cm diameter produces a high output voltage of similar to 4.1 V, current similar to 295 nA at a strain of 0.5% and 5 hz. This can efficiently run commercially available electronic components in a self-powered mode without any external electrical supply.
机译:在本文中,我们通过使用直接写入,近场静电纺丝(NFES)技术和聚偏二氟乙烯(PVDF)微/纳米纤维(MNFs)作为来源,展示了一种高度灵活的全纤维基透明压电收集器(ATPH)材料。在这里,我们全面表明,可以使用静电纺丝和溅射工艺的简便且可扩展的组合制造路线来获得带有Au涂层纳米线(NW)电极的转移高性能透明电极。 a。镀金的MNF。 C。 110 nm厚可以显着降低结电阻,从而在低薄层电阻(175 O sq(-1))下产生高透射率(90%)。镀金的MNFs电极还显示出很大的柔韧性和可拉伸性,很容易超过氧化铟锡(ITO)膜的脆性。通过将设备滚动成圆柱形状,可以实现ATPH性能的进一步改善,由于协同效果的增强,功率输出得以提高。轧制的直径为0.34厘米的ATPH在0.5%和5 hz的应变下产生的高输出电压类似于4.1 V,电流类似于295 nA。这可以在没有任何外部电源的情况下以自供电模式有效地运行市售的电子组件。

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