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首页> 外文期刊>Nanotechnology >Improved breakdown strength and electrical energy storage performance of gamma-poly (vinylidene fluoride)/unmodified montmorillonite clay nano-dielectrics
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Improved breakdown strength and electrical energy storage performance of gamma-poly (vinylidene fluoride)/unmodified montmorillonite clay nano-dielectrics

机译:γ-聚偏氟乙烯/未改性蒙脱土纳米介电材料的击穿强度和电能存储性能提高

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摘要

A remarkable improvement in the dielectric breakdown strength (E-b) and discharge energy density (U-e) of flexible polymer nanocomposites is realized by the incorporation of unmodified smectite montmorillonite (MMT) nanoclay into a poly(vinylidene fluoride) (PVDF) matrix. The resulting PVDF/MMT clay nanocomposite (PCN) films stabilize the. phase and increase the path tortuosity via strong intercalation of the PVDF matrix into inorganic layered silicates without sacrificing the quality of surface morphology. The PCN films exhibits superior dielectric properties (up to epsilon(r) similar to 28 and tan delta similar to 0.032 at 1 kHz) than those of pure PVDF. As a result, a large increase in E-b of 873 MV m(-1) and U-e of 24.9 J cm(-3) is achieved. Subsequently, the PCN films possess more than 60% charge-discharge efficiency even at higher electric field and thus provide a scope to develop high energy density flexible and transparent materials for energy storage technologies.
机译:通过将未改性的蒙脱石蒙脱土(MMT)纳米粘土掺入聚偏二氟乙烯(PVDF)基质中,实现了柔性聚合物纳米复合材料的介电击穿强度(E-b)和放电能量密度(U-e)的显着改善。所得的PVDF / MMT粘土纳米复合材料(PCN)薄膜稳定了该薄膜。通过牢固地将PVDF基质插入无机层状硅酸盐中,可以增加相的弯曲度并增加路径曲折度,而不会牺牲表面形态的质量。与纯PVDF相比,PCN膜具有优异的介电性能(在1 kHz下高达ε类似于28,tanδ类似于0.032)。结果,实现了873 MV m(-1)的E-b和24.9 J cm(-3)的U-e的大幅增加。随后,即使在较高的电场下,PCN膜也具有超过60%的充放电效率,因此为开发用于能量存储技术的高能量密度柔性和透明材料提供了空间。

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