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Ultra-Stretchable Piezoelectric Nanogenerators via Large-Scale Aligned Fractal Inspired Micro/Nanofibers

机译:通过大规模对准分形启发的微/纳米纤维的超拉伸压电纳米发电机。

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摘要

Stretchable nanogenerators that directly generate electricity are promising for a wide range of applications in wearable electronics. However, the stretchability of the devices has been a long-standing challenge. Here we present a newly-designed ultra-stretchable nanogenerator based on fractal-inspired piezoelectric nanofibers and liquid metal electrodes that can withstand strain as large as 200%. The large-scale fractal poly(vinylidene fluoride) (PVDF) micro/nanofibers are fabricated by combination of helix electrohydrodynamic printing (HE-Printing) and buckling-driven self-assembly. HE-Printing exploits “whipping/buckling” instability of electrospinning to deposit serpentine fibers with diverse geometries in a programmable, accurately positioned, and individually-controlled manner. Self-organized buckling utilizes the driven force from the prestrained elastomer to assemble serpentine fibers into ultra-stretchable fractal inspired architecture. The nanogenerator with embedded fractal PVDF fibers and liquid-metal microelectrodes demonstrates high stretchability (>200%) and electricity (currents >200 nA), it can harvest energy from all directions by arbitrary mechanical motion, and the rectified output has been applied to charge the commercial capacitor and drive LEDs, which enables wearable electronics applications in sensing and energy harvesting.
机译:直接可发电的可伸展纳米发电机有望在可穿戴电子产品中广泛应用。然而,装置的可拉伸性一直是长期的挑战。在这里,我们介绍一种基于分形启发的压电纳米纤维和可承受高达200%应变的液态金属电极的新设计的超拉伸纳米发电机。大型分形聚偏二氟乙烯(PVDF)微纤维/纳米纤维是通过螺旋电动流体动力印刷(HE-Printing)和屈曲驱动的自组装相结合而制成的。 HE-Printing利用电纺丝的“搅打/屈曲”不稳定性,以可编程,精确定位和单独控制的方式沉积具有各种几何形状的蛇形纤维。自组织屈曲利用来自预应变弹性体的驱动力将蛇形纤维组装成超可拉伸的分形灵感架构。带有分形PVDF纤维和液态金属微电极的纳米发电机具有高拉伸性(> 200%)和电(电流> 200 nA),可通过任意机械运动从各个方向收集能量,并将整流后的输出用于充电商用电容器和驱动器LED,可实现可穿戴电子设备在传感和能量收集中的应用。

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