Song Kibum, Shin Keun-Young
Department of Convergence of Energy Policy and Technology, Soongsil University 369, Sangdo-ro, Dongjak-gu, Seoul 06978, Republic of Korea.
Department of Materials Science and Engineering, Soongsil University 369, Sangdo-ro, Dongjak-gu, Seoul 06978, Republic of Korea.
Polymers (Basel). 2025 Jul 26;17(15):2041. doi: 10.3390/polym17152041.
In this study, we present a flexible piezoelectric nanogenerator based on a zinc oxide (ZnO)/polyvinylidene fluoride (PVDF) nanocomposite electrospun onto a hemisphere-patterned PDMS substrate. The nanogenerator was fabricated by replicating a silicon mold with inverted hemispheres into PDMS, followed by direct electrospinning of ZnO-dispersed PVDF nanofibers. Varying the ZnO concentration from 0.6 to 1.4 wt% allowed us to evaluate its effect on structural, dielectric, and piezoelectric properties. The nanogenerator containing 0.8 wt% ZnO exhibited the thinnest fibers (371 nm), the highest β-phase fraction (85.6%), and the highest dielectric constant (35.8). As a result, it achieved the maximum output voltage of 7.30 V, with excellent signal consistency under an applied pressure of 5 N. Comparisons with pristine PVDF- and ZnO/PVDF-only devices demonstrated the synergistic effect of ZnO loading and patterned PDMS on the enhancement of piezoelectric output. The hemisphere-patterned PDMS substrate improved the mechanical strain distribution, interfacial contact, and charge collection efficiency. These results highlight the potential of ZnO/PVDF/PDMS hybrid nanogenerators for use in wearable electronics and self-powered sensor systems.
在本研究中,我们展示了一种基于氧化锌(ZnO)/聚偏二氟乙烯(PVDF)纳米复合材料的柔性压电纳米发电机,该复合材料通过电纺丝法被纺到半球形图案化的聚二甲基硅氧烷(PDMS)衬底上。该纳米发电机的制备过程是先将具有倒半球形的硅模具复制到PDMS中,然后直接电纺丝分散有ZnO的PVDF纳米纤维。将ZnO浓度从0.6 wt%变化到1.4 wt%,使我们能够评估其对结构、介电和压电性能的影响。含有0.8 wt% ZnO的纳米发电机表现出最细的纤维(371 nm)、最高的β相分数(85.6%)和最高的介电常数(35.8)。因此,它实现了7.30 V的最大输出电压,在5 N的外加压力下具有出色的信号一致性。与原始PVDF和仅含ZnO/PVDF的器件进行比较,证明了ZnO负载和图案化PDMS对增强压电输出的协同效应。半球形图案化的PDMS衬底改善了机械应变分布、界面接触和电荷收集效率。这些结果突出了ZnO/PVDF/PDMS混合纳米发电机在可穿戴电子设备和自供电传感器系统中的应用潜力。