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Mitigation of charge injection in polyethylene films by silver nanoparticles/SiOxCy:H barrier layer: Dependence on the particles size and surface density

机译:银纳米颗粒/ SiOxCy:H阻挡层可减轻聚乙烯薄膜中的电荷注入:取决于颗粒尺寸和表面密度

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We have recently reported on the effect of silver nanoparticles plasma polymerized stack deposited on a polyethylene film preventing charge injection of both polarities under DC field. We investigate here the effects of the size and density of the silver nanograins on the barrier effect for charge injection. Size and density of the nanoparticles, and the surface coverage are controlled through the plasma process. A comparative study of space charge distribution between a reference polyethylene film and tailored films is presented in 300 μm-thick films using the pulsed-electroacoustic technique. It is shown that the barrier effect depends on the size distribution of the nanoparticles and surface coverage: 15 nm silver nanoparticles with a high surface density but still not percolating form an efficient barrier layer that suppress charge injection. It is worthy to note that charge injection is detected with an increasing intensity for percolating nanoparticles, for a semi-insulating layer without nanoparticles and for smaller size silver particles (<;10 nm). The mechanism of charge injection mitigation is discussed.
机译:我们最近报道了沉积在DC场下两种极性的聚乙烯膜上的银纳米粒子血浆聚合叠层的效果。我们在这里调查银纳米的尺寸和密度对电荷注射的阻挡效果的影响。纳米颗粒的尺寸和密度,通过等离子体工艺控制表面覆盖。使用脉冲电声技术在300μm厚的薄膜中呈现了参考聚乙烯膜和定制薄膜之间的空间电荷分布的对比研究。结果表明,阻挡效应取决于纳米颗粒和表面覆盖的尺寸分布:15nm银纳米颗粒,具有高表面密度,但仍未渗透形成抑制电荷注入的有效阻挡层。值得注意的是,在没有纳米颗粒的半绝缘层和较小尺寸的银颗粒(<; 10nm)的半绝缘层,以渗透纳米颗粒的增加,检测到电荷注射。讨论了电荷注射缓解机制。

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