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Understanding the Percolation Effect in Triboelectric Nanogenerator with Conductive Intermediate Layer

机译:了解用导电中间层的摩擦电纳米液中的渗滤效应

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摘要

Introducing the conductive intermediate layer into a triboelectric nanogenerator (TENG) has been proved as an efficient way to enhance the surface charge density that is attributed to the enhancement of the dielectric permittivity. However, far too little attention has been paid to the companion percolation, another key element to affect the output. Here, the TENG with MXene-embedded polyvinylidene fluoride (PVDF) composite film is fabricated, and the dependence of the output capability on the MXene loading is investigated experimentally and theoretically. Specifically, the surface charge density mainly depends on the dielectric permittivity at lower MXene loadings, and in contrast, the percolation becomes the degrading factor with the further increase of the conductive loadings. At the balance between the dielectric and percolation properties, the surface charge density of the MXene-modified TENG obtained 350% enhancement compared to that with the pure PVDF. This work shed new light on understanding the dielectric and percolation effect in TENG, which renders a universal strategy for the high-performance triboelectronics.
机译:将导电中间层引入摩擦纳米料α(滕)被证明是增强归因于介电常数增强的表面电荷密度的有效方法。然而,对伴侣的渗透来说,对伴侣来说,这是一种影响产出的另一个关键因素。这里,制造牙莴苣聚偏二氟乙烯(PVDF)复合膜的滕,并在实验和理论上研究了输出能力对MXENE负载的依赖性。具体地,表面电荷密度主要取决于较低偏掺造的介电介电常数,并且相反,渗透成为导电载荷的进一步增加的降低因子。在电介质和渗透性能之间的平衡下,与纯PVDF相比,MXENE改性滕的表面电荷密度得到350%的增强。这项工作揭示了了解滕的介电和渗滤效应,使其成为高性能摩擦电导性的普遍策略。

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