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Electroluminescence measurements of low-density polyethylene (LDPE) films subjected to high electrical stresses in different gas environments

机译:在不同气体环境中承受高电应力的低密度聚乙烯(LDPE)膜的电致发光测量

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摘要

It has been proposed that the measurement of the characteristics of electroluminescence (EL) observed during the application of ac and dc electric fields across thin films of polymeric material can be used to probe the early stages of electrical ageing. Both EL and electrical ageing of the polymer are thought to arise due to the injection of charge carriers into the material from the metallic electrodes. However, before changes in the EL characteristics can be properly assigned to polymeric ageing, it is necessary to understand the physical processes that give rise to EL. In this paper, the effect of absorbed gases N2 and SF6 on the EL characteristics of low density polyethylene were examined. It was found that the EL can be split into two different spectral components, C1, having a broad peak centered at a wavelength between 550 and 600 nm, and a second component, C2, having a peak wavelength greater than 700 nm. The intensity of the C1 component of EL was found to depend on the type absorbed gas present in the material while the intensity of the C2 component was found to be independent. The results demonstrate that the electronegativity of the absorbed gas plays a fundamental role in the formation of excited states and subsequent recombination in the case of the C1 emission while the C2 emission supports the conjecture that this is due to the excitation of surface plasmons at the dielectric/polymer interface.
机译:已经提出,在跨聚合物材料薄膜施加交流和直流电场期间观察到的电致发光(EL)特性的测量可以用于探测电老化的早期阶段。据认为,由于电荷载流子从金属电极注入到材料中,聚合物的电致发光和电老化都发生了。但是,在将EL特性的变化正确地分配给聚合物老化之前,必须了解引起EL的物理过程。在本文中,研究了吸收的气体N2和SF6对低密度聚乙烯的EL特性的影响。已经发现,EL可以分成两个不同的光谱成分,C1,其具有以550-600nm之间的波长为中心的宽峰,以及第二成分,C2,其具有大于700nm的峰值波长。发现EL的C 1组分的强度取决于材料中存在的吸收气体的类型,而发现C 2组分的强度是独立的。结果表明,在C1发射的情况下,吸收气体的电负性在激发态的形成和随后的复合中起着基本作用,而C2发射则支持这种推测,这是由于在电介质上激发了表面等离子体激元/聚合物界面。

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