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Poly (vinylidene fluoride) Electrospun Non-Woven Nanofibers based Piezoelectric Nanogenerator

机译:聚(偏二氟乙烯)电纺无纺布纳米纤维的压电纳米料

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PVDF (polyvinylidene fluoride) and its copolymers are the most promising piezoelectric polymers in sensors, actuators, and energy harvesting, owing to a repetitive structure - [CH2 — CF2]n - and 50% crystalline. In the present study, we examined the influence of multi-jet (32 jets) electrospinning with a randomized approach focused on three variables, which are feeding rate, the voltage applied, and tip-to-collector distance. Furthermore, the effect of single and double layer piezoelectric nanogenerator (PENG) was demonstrated under the pendulum impact loadings. The prepared nanofiber structures were characterized using FE-SEM, FTIR, and XRD. Outcomes from the morphological analysis appeared that the spinning parameter, the tip-to-collector distance, plays a crucial role in the formation of beads free with uniform distribution of nanofibers and β-phase formation. The fabricated PENG was able to generate a maximum open-circuit output of 24 V at 2.5 N from 50 μm thick nanofiber web under a single impact. In this way, the output voltage generated is sufficient for the operation of nanoelectromechanical systems (NEMS), low-power electronics and energy harvesting.
机译:PVDF(聚偏二氟乙烯)及其共聚物是传感器,致动器和能量收集中最有前途的压电聚合物,由于重复的结构 - [CH 2 - CF. 2 ] n - 和50%的结晶。在本研究中,我们检查了多射流(32个喷射)静电纺丝的影响,其集中在三个变量上,这些方法是馈送速率,施加电压和尖端到集电极距离。此外,在摆锤冲击载荷下对单层和双层压电纳米液(韧性)的效果​​证明。使用Fe-SEM,FTIR和XRD表征制备的纳米纤维结构。从形态学分析的结果似乎旋转参数,尖端到集电极距离在没有均匀分布纳米纤维和β相形成的珠子中起着至关重要的作用。制造的彭在单一冲击下,能够在2.5 n下在2.5 n下产生24 V的最大开路输出。以这种方式,产生的输出电压足以用于纳米机电系统(NEMS),低功率电子和能量收集的操作。

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