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Novel Piezoelectric Paper‐Based Flexible Nanogenerators Composed of BaTiO3 Nanoparticles and Bacterial Cellulose

机译:BaTiO3纳米粒子和细菌纤维素组成的新型压电纸基柔性纳米发生器

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摘要

A piezoelectric paper based on BaTiO3 (BTO) nanoparticles and bacterial cellulose (BC) with excellent output properties for application of nanogenerators (NGs) is reported. A facile and scalable vacuum filtration method is used to fabricate the piezoelectric paper. The BTO/BC piezoelectric paper based NG shows outstanding output performance with open‐circuit voltage of 14 V and short‐circuit current density of 190 nA cm−2. The maximum power density generated by this unique BTO/BC structure is more than ten times higher than BTO/polydimethylsiloxane structure. In bending conditions, the NG device can generate output voltage of 1.5 V, which is capable of driving a liquid crystal display screen. The improved performance can be ascribed to homogeneous distribution of piezoelectric BTO nanoparticles in the BC matrix as well as the enhanced stress on piezoelectric nanoparticles implemented by the unique percolated networks of BC nanofibers. The flexible BTO/BC piezoelectric paper based NG is lightweight, eco‐friendly, and cost‐effective, which holds great promises for achieving wearable or implantable energy harvesters and self‐powered electronics.
机译:报道了一种基于BaTiO3(BTO)纳米粒子和细菌纤维素(BC)的压电纸,具有出众的输出性能,可用于纳米发电机(NGs)的应用。简便且可扩展的真空过滤方法用于制造压电纸。基于BTO / BC压电纸的NG具有出色的输出性能,开路电压为14 V,短路电流密度为190 nA cm -2 。这种独特的BTO / BC结构产生的最大功率密度是BTO /聚二甲基硅氧烷结构的十倍以上。在弯曲条件下,NG设备可以产生1.5 V的输出电压,该电压能够驱动液晶显示屏。改善的性能可归因于压电BTO纳米颗粒在BC基质中的均匀分布,以及由BC纳米纤维的独特渗透网络实现的压电纳米颗粒应力的增加。基于NG的BTO / BC压电纸具有柔性,重量轻,生态友好且具有成本效益,为实现可穿戴或可植入的能量收集器和自供电电子设备提供了广阔的前景。

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