材料科学
纳米纤维
压电
静电纺丝
能量收集
纳米颗粒
钛酸钡
挠曲电
摩擦电效应
铁电性
纳米技术
纳米发生器
铁电聚合物
复合材料
锆钛酸铅
聚合物
陶瓷
光电子学
能量(信号处理)
电介质
统计
数学
共聚物
作者
Seongpil An,Hong Seok Jo,Gen Li,Edmund Samuel,Sam S. Yoon,Alexander L. Yarin
标识
DOI:10.1002/adfm.202001150
摘要
Abstract Here, ultrathin, flexible, and sustainable nanofiber‐based piezoelectric nanogenerators (NF‐PENGs) are fabricated and applied as wave energy harvesters. The NF‐PENGs are composed of poly(vinylidene fluoride‐ co ‐trifluoroethylene) (P(VDF‐TrFE)) nanofibers with embedded barium strontium titanate (BaSrTiO 3 ) nanoparticles, which are fabricated by using facile, scalable, and cost‐effective fiber‐forming methods, including electrospinning and solution blowing. The inclusion of ferroelectric BaSrTiO 3 nanoparticles inside the electrospun P(VDF‐TrFE) nanofibers enhances the sustainability of the NF‐PENGs and results in unique flexoelectricity‐enhanced piezoelectric nanofibers. Not only do these NF‐PENGs yield a superior performance compared to the previously reported NF‐PENGs, but they also exhibit an outstanding durability in terms of mechanical properties and cyclability. Furthermore, a new theoretical estimate of the energy harvesting efficiency from the water waves is introduced here, which can also be employed in future studies associated with various nanogenerators, including PENGs and triboelectric nanogenerators.
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