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Carbon nanotubes for high performance flexible piezoelectric polymer composite nanogenerators

机译:高性能柔性压电聚合物复合纳米发电机用碳纳米管

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Recently, the demand for flexible and wearable nanogenerators (NGs) have been paid great of attention to convert mechanical energy such as human motion into electrical energy. NGs are known by their simple structure and excellent piezoelectric performance after polarization. However, the polarization is very long and unsafe. In order to avoid that, the proposed solution was to dope multiwalled carbon nanotubes (MWCNTs) for better distribution of piezoelectric nanoparticles. In this work, piezoelectric nanocomposite generators were prepared using solution mixing and mold casting. A comparative study was performed to investigate the impact of MWCNTs via morphological and mechanical testing. Both nanogenerators shows good performance due to high uniformity of nanoparticle distribution within the polymer matrix showing the efficiency of the adapted fabrication process. In addition, doping multiwalled carbon nanotube (MWCNTs) within the piezoelectric nanocomposite leads to increase the output voltage by about 20% comparing to the NG without carbon nanotube (CNTs) which corresponds to 6.6 V and a power of ~37.87 μW at a load resistance of about 660 kΩ due to the enhanced distribution of the nanoparticle and better electro-mechanical coupling.
机译:近来,对于将诸如人的运动之类的机械能转换成电能的挠性和可穿戴的纳米发电机(NG)的需求已经引起了极大的关注。 NG以其简单的结构和极化后的出色压电性能而著称。但是,极化非常长且不安全。为了避免这种情况,提出的解决方案是对多壁碳纳米管(MWCNT)进行掺杂,以更好地分布压电纳米粒子。在这项工作中,使用溶液混合和铸模制备了压电纳米复合材料发生器。进行了一项比较研究,以通过形态学和机械测试研究MWCNT的影响。两种纳米发生器均表现出良好的性能,这归因于纳米颗粒在聚合物基质中的高度均匀分布,从而显示出合适的制造工艺的效率。此外,与没有碳纳米管的NG相比,在压电纳米复合材料中掺杂多壁碳纳米管(MWCNT)导致输出电压增加约20%,在负载电阻下对应于6.6 V和约37.87μW的功率由于增强了纳米粒子的分布和更好的机电耦合,约660kΩ的电阻达到了约660kΩ。

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