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A flexible piezoelectric pressure sensor based on PVDF nanocomposite fibers doped with PZT particles for energy harvesting applications

机译:基于PVDF纳米复合纤维的柔性压电压力传感器掺杂有PZT颗粒的能量收集应用

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Flexible piezoelectric energy harvesters are a suitable choice for scavenging wasted mechanical energy because of the high demand for sustainable power sources. Flexible pressure sensors based on PVDF-PZT nanocomposite with different PZT volume fractions (0.011, 0.041, 0.096, 0.17, 0.3, and 0.37) were prepared in the form of fibers through an electrospinning method for piezoelectric energy harvesting application. According to the results, dielectric constant and piezoelectric coefficients (epsilon) piezoelectric coefficient, and figure of merit) gradually increased with the doping of PZT particles into PVDF fibers. Dielectric constant (e), piezoelectric coefficient (d), and figure of merit (d x g) for PVDF-PZT nanocomposite with 0.011 PZT volume fraction were 37.29, 10.51 pCN(-1), and 33.46 x 10(-16) m(2)/N, respectively, and increased to 104.81, 22.93 pCN(-1), and 56.68 x 10(-16) m(2)/N for PVDF-PZT nanocomposite fibers with a volume fraction of 0.37. As piezoelectric energy harvesters, piezoelectric sensitivity of PVDF-PZT nanocomposite fibers rose with increasing the PZT volume fraction. The generated output voltage was 184 mV under an applied force of 2.125 N with the piezoelectric sensitivity calculated as 173.507mV/N mu m for PVDF-PZT nanocomposite fibers with 0.37 PZT volume fractions which increased compared to pristine PVDF fibers (generated output voltage = 22 mV under applied force 2.4 N, piezoelectric sensitivity = 29.49 mV/N mu m). The achieved output power density of PVDF-PZT nanocomposite fibers with 0.37 PZT volume fractions was obtained 30.69 mu W cm(-2 )higher than PVDF-PZT nanocomposite fibers with 0.011 PZT volume fractions (18.44 mu W cm(-2)).
机译:Flexible piezoelectric energy harvesters are a suitable choice for scavenging wasted mechanical energy because of the high demand for sustainable power sources.通过纤维的形式,通过静电能量收集应用的静电方法制备基于不同PVDF-PZT纳米复合材料的柔性压力传感器(0.011,0.041,0.096,0.17,0.17,0.37)。根据结果​​,介电常数和压电系数(epsilon)压电系数和优异图谱逐渐增加,随着PZT颗粒的掺杂到PVDF纤维中。 PVDF-PZT纳米复合材料的介电常数(e),压电系数(D)和功绩(DXG)的效应(DXG),具有0.011pzt体积分数为37.29,10.51pcn(-1)和33.46×10(-16)m(2用于PVDF-PZT纳米复合纤维的PVDF-PZT纳米复合纤维,分别增加至104.81,22.93pcn(-1)和56.68×10(-16)m(2)/ n,具有0.37的体积分数。作为压电能量收割机,PVDF-PZT纳米复合纤维的压电敏感性随着PZT体积分数的增加而上升。在2.125N的施加力下,对于PVDF-PZT纳米复合纤维计算的压电敏感性,产生的输出电压为184mV,对于PVDF-PZT纳米复合纤维,与原始PVDF纤维相比增加了0.37pzt体积分数(产生的输出电压= 22施加力2.4 n下的MV,压电灵敏度= 29.49mV / n mu m)。获得PVDF-PZT纳米复合纤维的PVDF-PZT纳米复合纤维的输出功率密度30.69μm,高于PVDF-PZT纳米复合纤维,具有0.011pzt体积分数(18.44μm(-2))。

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