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Dynamic Behavior of the Triboelectric Charges and Structural Optimization of the Friction Layer for a Triboelectric Nanogenerator

机译:摩擦电纳米发电机的摩擦电荷动力学行为和摩擦层的结构优化

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摘要

Seeking to increase the triboelectric charge density on a friction layer is one of the most basic approaches to improve the output performance of triboelectric nano generators (TENGs). Here, we studied the storage mechanism of triboelectric charge in the friction layer and discussed the function of carrier mobility and concentration in the charge storing process. As guided by these results, a kind of composite structure is constructed in the friction layer to adjust the depth distribution of the triboelectric charges and improve the output performance of TENGs. To further elucidate this theory, a simple TENG, whose negative friction layer is a composite structure by integrating polystyrene (PS) and carbon nanotubes (CNTs) into polyvinylidene fabricated, and its performance test was also carried out. Comparing with a pure PVDF friction fluoride (PVDF), was layer, the composite friction layer can raise the triboelectric charge density by a factor of 11.2. The extended residence time of electrons in the friction layer is attributed to a large sum of electron trap levels from PS.
机译:寻求增加摩擦层上的摩擦电荷密度是提高摩擦纳米发电机(TENGs)输出性能的最基本方法之一。在这里,我们研究了摩擦层中摩擦电荷的存储机理,并讨论了电荷迁移过程中载流子迁移率和浓度的作用。根据这些结果,可以在摩擦层中构建一种复合结构,以调节摩擦电荷的深度分布并提高TENG的输出性能。为了进一步阐明该理论,制造了一个简单的TENG,它的负摩擦层是通过将聚苯乙烯(PS)和碳纳米管(CNT)集成到聚亚乙烯基中而形成的复合结构,并且还进行了性能测试。与纯PVDF摩擦氟化物(PVDF)层相比,复合摩擦层可以将摩擦电荷密度提高11.2倍。电子在摩擦层中停留时间的延长归因于来自PS的大量电子陷阱能级。

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