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Investigation of charge transport and breakdown properties in XLPE/GO nanocomposites part 1: The role of functionalized GO quantum wells

机译:XLPE / GO纳米复合材料中的电荷输送和击穿性能研究第1部分:官能化GO量子孔的作用

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The charge transport characteristics and breakdown properties of cross-linked polyethylene (XLPE)/graphene oxide (GO) nanocomposites are investigated in this study. The functionalized graphene oxide (fGO) quantum wells (QWs) with quantum confinement effects were produced by chemically grafting the polycyclic aromatic compounds (PAC) onto the surface of GO QWs. The XLPE/GO nanocomposites doped with different kinds of dopants were prepared by mechanical blending, of which the DC conductivity, space charge behaviors, and breakdown strength were measured. The experimental results reveal that the GO QWs show a synergistic effect with PAC on the modification of insulating properties in XLPEs. The grafted PAC on the surface of GO QWs still retains its original function of attenuating the energy of charge carriers, while the interlayer distances of fGO QWs increase after functionalization. As a result, the XLPE/fGO nanocomposites show a much lower conductivity, fewer space charge accumulation, and higher breakdown strength than those of the other XLPEs. Based on the quantum chemistry calculation method, the role of fGO QWs in the regulation of charge transport and breakdown properties in polyethylene was revealed.
机译:在本研究中研究了交联聚乙烯(XLPE)/石墨烯(GO)纳米复合材料的交联聚乙烯(XLPE)/石墨烯(GO)纳米复合材料的电荷传输特性和击穿性能。通过将多环芳族化合物(PAC)在QWS的表面上来将多环芳族化合物(PAC)化学嫁接到QWS表面上,产生具有量子限制效应的官能化的石墨烯氧化物(FPO)量子孔(QW)。通过机械混合制备掺杂有不同种类的掺杂剂的XLPE /去纳米复合材料,其中测量了DC电导率,空间电荷行为和击穿强度。实验结果表明,GO QWS在XLPE中的绝缘性能改变方面表现出协同作用。 Go QWS表面上的接枝PAC仍然保留其衰减电荷载体能量的原始功能,而FGO QWS的层间距离在功能化之后增加。结果,XLPE / FPO纳米复合材料显示出更低的导电性,更少的空间电荷累积,以及比其他XLP的更高的击穿强度。基于量子化学计算方法,揭示了FPO QWS在聚乙烯中电荷输送和击穿性能调节中的作用。

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