首页> 外文期刊>Journal of nanomaterials >Polyethylene/Graphene Nanoplatelet Nanocomposite-Based Insulating Materials for Effective Reduction of Space Charge Accumulation in High-Voltage Direct-Current Cables
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Polyethylene/Graphene Nanoplatelet Nanocomposite-Based Insulating Materials for Effective Reduction of Space Charge Accumulation in High-Voltage Direct-Current Cables

机译:聚乙烯/石墨烯纳米纳薄纳米复合材料的绝缘材料,用于有效降低高压直流电缆中的空间电荷累积

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We have demonstrated a straightforward hydrophobic surface modification of graphene nanoplatelets (GNPs) through a defect-healing process to fabricate well-dispersed insulating low-density polyethylene (LDPE)/GNP nanocomposites and have confirmed their effective suppression of space charge accumulation. Without any organic modifiers, GNPs containing oxygen-based functional groups at the edges were successfully reduced at optimal high-temperature defect-healing condition and modified to have hydrophobic surface properties similar to those of the LDPE matrix. The degree of dispersion and the reproducibility of the mechanically melt-mixed LDPE/GNP nanocomposites were immediately analyzed by thickness-normalized optical absorption measurement. In the LDPE matrix, below the percolation threshold concentration, well-dispersed GNP fillers effectively acted as trapping sites under high electric fields, resulting in the successful suppression of packet-like space charge accumulation (field enhancement factor=1.04 @ 0.1?wt% LDPE/GNP nanocomposite).
机译:我们已经证明了石墨烯纳米片(GNP)的直接疏水表面改性通过缺陷愈合方法,以制造井分散的绝缘低密度聚乙烯(LDPE)/ GNP纳米复合材料,并确认了它们的有效抑制空间电荷积累。在没有任何有机改性剂的情况下,在最佳的高温缺陷愈合条件下成功降低了含有基于氧的官能团的GNP,并改性与LDPE基质的疏水表面性质类似。通过厚度标准化的光学吸收测量立即分析机械熔融混合LDPE / GNP纳米复合材料的分散度和再现性。在LDPE矩阵下,低于渗透阈值浓度,井分散的GNP填料有效地作用为高电场下的捕获位点,导致成功抑制包状空间电荷累积(现场增强因子= 1.04 @0.1≤1.04wt%LDPE / GNP纳米复合材料)。

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