Hybrid Tribo/piezoelectic Electrospun Nanofibers for Energy Harvesting Enhancement in Flexible Electronics
Hao Zhang, Yurong He, Yaofeng Jin, Hui Wang, Wanqi Ye, Lidong Chen, and Kaiyang Zeng

TL;DR
This study develops hybrid tribo/piezoelectric nanofibers via electrospinning, significantly improving energy harvesting efficiency for flexible electronics by optimizing material composition and nanofiller incorporation.
Contribution
It introduces a novel hybrid nanogenerator using PVDF nanofibers with nanofillers, achieving higher beta phase content and power density than traditional TENGs or PENGs.
Findings
Maximum beta phase content reached 85.3%
Energy output of 1.133 W/m² achieved
Power density surpasses conventional TENGs and PENGs
Abstract
Triboelectric nanogenerators or TENGs and piezoelectric nanogenerators or PENGs have emerged as promising platforms for harvesting mechanical energy and converting it into electrical energy for powering flexible electronic devices. However, the material selection and structure design of such hybrid nanogenerator, and mechanisms of energy output still remain challenges. In this work, electrospinning is employed for the fabrication of nanofibers, particularly polyvinylidene fluoride or PVDF based nanofibers, due to its capability to generate high beta phase contents that effectively increase the piezoelectric performance of the PVDF friction layer, thereby enhancing the overall electrical performance for flexible electronics by merging tribo-piezoelectric power. Furthermore, various concentrations carbon nanotubes or CNT or graphene nanosheets or GNS are individually incorporated into the…
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Taxonomy
TopicsAdvanced Sensor and Energy Harvesting Materials · Innovative Energy Harvesting Technologies · Dielectric materials and actuators
