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THE THERMALLY STIMULATED CURRENTS OF SiO_2/LOW-DENSITY POLYETHYLENE MICRO- AND NANOCOMPOSITES

机译:SiO_2 /低密度聚乙烯微 - 和纳米复合材料的热刺激电流

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Composite samples of low-density polyethylene (LDPE)/nano-SiO_2 and LDPE/micro-SiO_2 were prepared with a method of double-solution mixture, respectively. Depolarization currents of all samples were investigated with thermally-stimulated current. It is found that the currents of both composites increase with the loading level of nano-SiO_2 and/or micro-SiO_2, and the peak width of each composite is greater than that of pure LDPE. In addition, the peak location of the nanocomposite shifts as the loading level increases, while that of the microcomposite does not shift significantly. For the sake of understanding activation energy of both composites and pure LDPE, a method of initial rise method was used to analyze the depolarization current. It is found that LDPE has the greatest activation energy among all samples and the activation energy of both composites decreases with the increase of the loading level. Moreover, the activation energy of the nanocomposite is less than that of the microcomposite at the same loading level. As the nano-SiO_2 loading level reaches 5.0 %wt, the nanocomposite has the least activation energy of 0.25 eV.
机译:用双溶液混合物的方法制备低密度聚乙烯(LDPE)/纳米SiO_2和LDPE / Micro-SiO_2的复合样品。通过热刺激的电流研究所有样品的去极电流。发现两种复合材料的电流随纳米SiO_2和/或微SiO_2的负载水平而增加,每个复合材料的峰宽大于纯LDPE的峰值。另外,随着负载水平的增加,纳米复合材料偏移的峰值位置增加,而微薄复合材料的峰值位置不会显着移动。为了理解两种复合材料和纯LDPE的激活能量,使用初始上升方法的方法来分析去极化电流。发现LDPE在所有样品中具有最大的激活能量,并且两种复合材料的激活能量随着负载水平的增加而降低。此外,纳米复合材料的活化能量小于相同负载水平的微型复合材料的活化能。由于纳米SiO_2加载水平达到5.0%WT,纳米复合材料具有0.25eV的最少​​活化能量。

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