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Output power density enhancement of triboelectric nanogenerators via ferroelectric polymer composite interfacial layers

机译:铁电聚合物复合界面层的输出功率密度增强摩擦纳米液

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摘要

To date, several attempts have been made to improve the performance of triboelectric nanogenerators (TENGs). Although notable advancements have been made in the output power density, it is still relatively low and further improvement in the output power density has been limited by air breakdown issue. In this work, we proposed preferable composite structures and an electrical activation method to maximize the output performance of TENGs by adopting ferroelectric composite interfacial layer. Specifically, by doping Nylon 11 with Poly (methyl methacrylate) - PMMA, we intensified the positive triboelectricity of Nylon 11 and simultaneously improved its physical durability. The negative triboelectricity of PVDF-TrFE was also enhanced by compositing with ZrO2 nanoparticles (NPs). Triboelectricity of both polymer composites was further boosted by polarizing them in favorable direction. Therefore, high frictional surface charge density of 220 mu C/m(2) was achieved in short-circuit condition, effectively promoting charge outputs. Consequently, the open circuit voltage and short circuit current density of similar to 500 V and similar to 500 mu A cm(-2) were achieved, respectively, exhibiting a remarkable output power density of similar to 42 mW cm(-2).
机译:迄今为止,已经进行了几次尝试,提高了摩擦电纳米液体(Tengs)的性能。尽管在输出功率密度下进行了显着的进步,但是输出功率密度的仍然相对较低,并且进一步改善受到空气分解问题的限制。在这项工作中,我们提出了优选的复合结构和电激活方法,通过采用铁电复合界面层来最大化Tengs的输出性能。具体地,通过用聚(甲基丙烯酸甲酯) - PMMA的掺杂尼龙11,我们加剧了尼龙11的正摩擦性,同时提高了其物理耐久性。通过用ZrO2纳米颗粒(NPS)与ZrO2纳米颗粒(NPS)合成,也增强了PVDF-TRFE的负摩擦性。通过以有利的方向偏振它们,进一步提高了两种聚合物复合材料的摩擦性。因此,在短路状态下实现了220μc/ m(2)的高摩擦表面电荷密度,有效地促进电荷输出。因此,分别实现了类似于500V且类似于500μm(-2)的开路电压和短路电流密度,表现出类似于42mW cm(-2)的显着输出功率密度。

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