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Significantly Enhanced Performance of Triboelectric Nanogenerator by Incorporating BaTiO_3 Nanoparticles in Poly(vinylidene fluoride) Film

机译:通过将BaTiO_3纳米粒子掺入聚偏二氟乙烯薄膜中来显着提高摩擦电纳米发电机的性能

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摘要

Triboelectric nanogenerators (TENGs) have received significant attention in recent years due to their renewable and sustainable properties. They convert mechanical energy into electric energy through contact and separation of two dissimilar materials. Many methods have been developed to improve the performance of TENGs, but little attention has been paid to use nanoparticles such as BaTiO3 (BTO) with high dielectric constant for enhancing the performance. This paper reports the achievement of significant performance enhancement of poly(vinylidene fluoride) (PVDF)/polyamide6 (PA6) TENGs by incorporating BTO nanoparticles into the PVDF film. The PVDFBTO/PA6 TENG with 10wt% BTO nanoparticles shows the best results with a peak voltage and charge density up to 900V and 34.4Cm2 at contact frequency of 5Hz when the contact force and the spacer distance are 180N and 100mm, which are much higher than 384V and 26.4Cm2 of the PVDF/PA6 TENG without incorporating BTO nanoparticles. Further increase in the BTO concentration deteriorates the output performance of the TENGs. Detailed investigations on the piezoresponse and permittivity of the PVDFBTO films show that the increased piezoelectric constant and permittivity are responsible for the significantly enhanced performance of the TENGs. A mathematical model has been developed to describe the output voltages of the TENG as a function of thickness of the PVDFBTO film.
机译:摩擦电纳米发电机(TENGs)由于其可再生和可持续的特性,近年来受到了广泛的关注。它们通过两种不同材料的接触和分离将机械能转换为电能。已经开发了许多方法来改善TENG的性能,但是很少注意使用具有高介电常数的纳米粒子,例如BaTiO3(BTO)来增强性能。本文报道了通过将BTO纳米粒子掺入PVDF薄膜中,实现了聚偏氟乙烯(PVDF)/聚酰胺6(PA6)TENG显着性能增强的成就。当接触力和间隔距离为180N和100mm时,具有10wt%BTO纳米颗粒的PVDFBTO / PA6 TENG表现出最好的结果,在5Hz的接触频率下,峰值电压和电荷密度高达900V和34.4Cm2,远高于不含BTO纳米粒子的PVDF / PA6 TENG的384V和26.4Cm2。 BTO浓度的进一步提高会降低TENG的输出性能。对PVDFBTO薄膜的压电响应和介电常数的详细研究表明,增加的压电常数和介电常数是TENGs性能显着提高的原因。已经开发出数学模型来描述TENG的输出电压与PVDFBTO膜厚度的关系。

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  • 来源
    《Physica status solidi》 |2019年第7期|1900068.1-1900068.9|共9页
  • 作者单位

    College of Information Science and Electronic Engineering,Zhejiang University,Hangzhou,P. R. China;

    College of Information Science and Electronic Engineering,Zhejiang University,Hangzhou,P. R. China;

    College of Information Science and Electronic Engineering,Zhejiang University,Hangzhou,P. R. China;

    College of Civil Eng. and Architecture,Zhejiang University,Hangzhou,P. R. China;

    Ministry of Education Key Lab. of RF Circuits and Systems,College of Electronics & Information Hangzhou Dianzi University,Hangzhou,P. R. China;

    College of Information Science and Electronic Engineering,Zhejiang University,Hangzhou,P. R. China;

    College of Civil Eng. and Architecture,Zhejiang University,Hangzhou,P. R. China;

    College of Civil Eng. and Architecture,Zhejiang University,Hangzhou,P. R. China;

    Faculty of Engineering and Environment,Northumbria University,Newcastle upon Tyne,UK;

    Institute of Renewable Energy and Environmental Technologies,Bolton University,Bolton,UK;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    BaTiO3 nanomaterial; high piezoelectric property; high relative permittivity; poly(vinylidene fluoride) (PVDF); triboelectric nanogenerators;

    机译:BaTiO3纳米材料;高压电性能;高相对介电常数;聚偏二氟乙烯(PVDF);摩擦电纳米发电机;

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