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首页> 外文期刊>Nano Energy >A durable and stable piezoelectric nanogenerator with nanocomposite nanofibers. embedded in an elastomer under high loading for a self-powered sensor system
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A durable and stable piezoelectric nanogenerator with nanocomposite nanofibers. embedded in an elastomer under high loading for a self-powered sensor system

机译:具有纳米复合纳米纤维的耐用且稳定的压电纳米发电机。高负载下嵌入弹性体中的自供电传感器系统

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摘要

generation, such as smart shoes, has been limited due to the low mechanical endurance of many piezoelectric materials. Durability and performance under harsh environments are a stumbling block for the practical application of PENGs. Synthesis of piezoelectrically enhanced nanofibers electrospun from nanocomposite of barium titanate nanoparticles (BT NPs) dispersed in poly(vinylidene fluoride-trifluoroethylene), (P(VDF-TrFE)) enables successful fabrication of a robust, efficient, flexible and lead-free PENG. A nanofiber PENG (nf-PENG) fabricated by embedding nanocomposite nanofibers in an elastomer film is demonstrated for biomechanical energy harvesting and storage during walldng. When placed inside of a shoe, a nf-PENG loaded with 15 wt% BT NPs can generate an output of 25 Vat a walking frequency of 0.6 Hz with high mechanical durability under very high loads (600 N). This can charge a 4.7 mu F capacitor after approximately 72 steps. The stored charge can operate a strain sensor without any external power supply. The high performance of the nf-PENG is mainly attributed to the self-poled nanocomposite nanofibers. Additionally, embedding the nanofibers into an elastomer provided high durability by protecting the nanofibers from mechanical damage. Furthermore, the devices small form factor, flexibility, and transparency make this nf-PENG suitable for applications in wearable electronics, where aesthetics and comfort are also desired (in addition to performance). This work demonstrates the possibility of highly durable, efficient, and self-powered wearable sensing systems that can work under extreme environments.
机译:由于许多压电材料的低机械耐力,诸如智能鞋之类的新一代产品受到了限制。恶劣环境下的耐用性和性能是PENG实际应用的绊脚石。由分散在聚(偏二氟乙烯-三氟乙烯)(P(VDF-TrFE))中的钛酸钡纳米颗粒(BT NPs)的纳米复合材料电纺压电增强纳米纤维可以成功制造出坚固,高效,柔性和无铅的PENG。通过将纳米复合纳米纤维嵌入弹性体薄膜中制成的纳米纤维PENG(nf-PENG)已被证明可用于壁挂过程中的生物力学能量收集和存储。当将nf-PENG放在鞋内时,其负载有15 wt%的BT NP可以在25 Hz的行走频率下产生25 V的输出,在非常高的负载(600 N)下具有较高的机械耐久性。经过大约72个步骤,即可为4.7μF电容器充电。所存储的电荷无需任何外部电源即可操作应变传感器。 nf-PENG的高性能主要归功于自极化的纳米复合纳米纤维。另外,通过保护纳米纤维免受机械损坏,将纳米纤维嵌入弹性体中提供了高耐久性。此外,该设备的小尺寸,灵活性和透明性使其适用于可穿戴电子设备中的应用,这些应用中还需要美观和舒适性(除了性能之外)。这项工作证明了可以在极端环境下工作的高度耐用,高效且自供电的可穿戴传感系统的可能性。

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