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Space Charge in Low-density Polyethylene /micro-SiO2 composite and Low-density Polyethylene/ nano-SiOx composite with different metal electrode pairs

机译:低密度聚乙烯/微型SiO2复合材料的空间电荷和低密度聚乙烯/纳米SiOx复合材料,具有不同的金属电极对

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Nano-SiOx and micro-SiO2 particles were homogeneously dispersed in low-density polyethylene with a method of double-solution mixture. Both kinds of the composites were sputtered with Au and Ag on both surfaces as electrodes, respectively. Space charge in the composites was investigated with pulsed electro-acoustic method (PEA). It is shown that space charge distribution in the sample with different metal electrode pairs relates with the electrode polarity. The amount of hetero-polarity space charge in pure LDPE after being electrically prestressed with Au (+)~Ag(驴) electrode pair is greater than that with Au (驴)~Ag(+) electrode pair. However, homo-polarity space charge appears in the microcomposite after being electrically prestressed with either Au (+)~Ag (驴) or Au (驴)~Ag (+) electrode pair, and the amount of space charge increases with micro-SiO2 content. It also could be seen that the amount of homo-polarity space charge in the microcomposite with Au(驴)~Ag(+) electrode pair is greater than that with Au(+)~Ag(驴) electrode pair. With electrically prestressing, hetero-polarity space charge appears in the nanocomposite with either Au (+)~Ag(驴)or Au(驴)~Ag(+) electrode pair and the amount of space charge increases with nano-SiOx content. In addition, the amount of space charge in the nanocomposite with Au (驴)~Ag(+) electrode pair is lower than that with Au(+)~Ag(驴) electrode pair. The space charge distribution difference in all samples with different electrode pairs has close relation to electron and (or) hole injection efficiency of different electrode material, as well as charge trapping and detrapping process in the interfaces of the samples.
机译:用双溶液混合物的方法均匀地分散在低密度聚乙烯中的纳米-SiOx和微型SiO 2颗粒。两种复合材料分别在两个表面上用Au和Ag溅射,作为电极。用脉冲电声方法(豌豆)研究了复合材料中的空间电荷。结果表明,具有不同金属电极对的样品中的空间电荷分布与电极极性相关。用Au(+)〜Ag(Ⅵ)电极对电预应力后纯LDPE中杂种极性空间电荷的量大于Au(驴)〜Ag(+)电极对。然而,在用Au(+)〜Ag(驴)或AU(+)电极对电预应力之后,在微型复合材料中出现同型极性空间电荷,并且使用微SiO2的空间电荷量增加内容。可以看出,用Au(驴)〜Ag(+)电极对微型化合物中的同型极性空间电荷量大于Au(+)〜Ag(驴)电极对。通过电预应力,杂体极性空间电荷在纳米复合材料中出现,具有Au(+)〜Ag(驴)或Au(驴)〜Ag(+)电极对,并且空间电荷量随纳米SiOx含量增加。另外,用Au(=)〜Ag(+)电极对的纳米复合材料中的空间电荷量低于Au(+)〜Ag(驴)电极对。具有不同电极对的所有样品中的空间电荷分布差异与不同电极材料的电子和(或)孔注射效率的密切相关,以及在样品的界面中的电荷捕获和脱裂过程。

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