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首页> 外文期刊>Polymer Degradation and Stability >Interactions between a phenolic antioxidant, moisture, peroxide and crosslinking by-products with metal oxide nanoparticles in branched polyethylene
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Interactions between a phenolic antioxidant, moisture, peroxide and crosslinking by-products with metal oxide nanoparticles in branched polyethylene

机译:支链聚乙烯中酚类抗氧化剂,水分,过氧化物和交联副产物与金属氧化物纳米颗粒之间的相互作用

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摘要

Polyethylene composites based on metal oxide nanoparticles are emerging materials for use in the insulation of extruded HVDC cables. The short-term electrical performance of these materials is adequate, but their stability for extended service needs to be assessed. This study is focussed on the capacity of the nanoparticles to adsorb polar species (water, dicumyl peroxide and byproducts from peroxide-vulcanisation, acetophenone and cumyl alcohol) that have an impact on the electrical conductivity of nanocomposites, the oxidative stability by adsorption of phenolic antioxidants on the nanoparticles and the potential transfer of catalytic impurities from the nanoparticles to the polymer. The adsorption of water, dicumyl peroxide, acetophenone, cumyl alcohol and Irganox 1076 (phenolic antioxidant) on pristine and coated (hydrophobic silanes and poly(lauryl methacrylate)) Al_2O_3, MgO and ZnO particles ranging from 25 nm to 2 μm was assessed. Composites based on low-density polyethylene and the particles mentioned (≤12 wt.%) were prepared, the degree of adsorption of Irganox 1076 onto the particles was assessed by OIT measurements, and the release of volatile species at elevated temperature was assessed by TG. The concentration of moisture adsorbed on the particles at 25 ℃ increased linearly with both increasing hydroxyl group concentration on the particle surfaces and increasing relative humidity. Dicumyl peroxide showed no adsorption on any of the nanoparticles. Acetophenone and cumyl alcohol showed a linear increase in adsorption with increasing concentration of hydroxyl groups, but the quantities were much smaller than those of water. Irganox 1076 adsorbed only onto the uncoated nanoparticles. Uncoated ZnO nanoparticles that contained ionic species promoted radical formation and a lowering of the OIT. This study showed that carefully coated pure metal oxide nanoparticles are not likely to adsorb phenolic antioxidants or dicumyl peroxide, but that they have the capacity to adsorb moisture and polar byproducts from peroxide vulcanisation, and that they will not introduce destabilizing ionic species into the polymer matrix. Low contents of dry, equiaxed ZnO and MgO particles strongly retarded the release of volatile species at temperatures above 300 ℃.
机译:基于金属氧化物纳米粒子的聚乙烯复合材料是新兴的用于绝缘HVDC电缆绝缘的材料。这些材料的短期电气性能是足够的,但是需要评估其在长期使用中的稳定性。这项研究的重点是纳米颗粒吸附极性物质(水,过氧化二枯基和过氧化物硫化,苯乙酮和枯基乙醇产生的副产物)的能力,这些极性物质对纳米复合材料的电导率,通过吸附酚类抗氧化剂的氧化稳定性有影响纳米颗粒的催化作用和催化杂质从纳米颗粒到聚合物的潜在转移。评估了水,二苯甲酰过氧化氢,苯乙酮,枯基醇和Irganox 1076(酚类抗氧化剂)在原始表面和25nm至2μm范围内的Al_2O_3,MgO和ZnO颗粒(疏水硅烷和聚甲基丙烯酸月桂酯)上的吸附。制备基于低密度聚乙烯和上述颗粒(≤12wt。%)的复合材料,通过OIT测量评估Irganox 1076在颗粒上的吸附程度,并通过TG评估高温下挥发性物质的释放。 25℃下吸附在颗粒上的水分浓度随颗粒表面羟基浓度的增加和相对湿度的增加而线性增加。过氧化二枯基显示没有吸附在任何纳米颗粒上。苯乙酮和枯基醇的吸附量随羟基浓度的增加呈线性增加,但比水少得多。 Irganox 1076仅吸附到未涂覆的纳米颗粒上。包含离子物种的未涂覆的ZnO纳米颗粒促进了自由基的形成和OIT的降低。这项研究表明,经过精心涂覆的纯金属氧化物纳米颗粒不太可能吸附酚类抗氧化剂或过氧化二枯基,但是它们具有吸附过氧化物硫化中的水分和极性副产物的能力,并且不会将不稳定的离子种类引入聚合物基质中。 。干燥的等轴状ZnO和MgO颗粒含量低,在300℃以上的温度下强烈阻碍了挥发性物质的释放。

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  • 来源
    《Polymer Degradation and Stability》 |2016年第3期|21-32|共12页
  • 作者单位

    KTH Royal Institute of Technology, School of Chemical Science and Engineering, Fibre and Polymer Technology, SE-100 44 Stockholm, Sweden;

    KTH Royal Institute of Technology, School of Chemical Science and Engineering, Fibre and Polymer Technology, SE-100 44 Stockholm, Sweden;

    KTH Royal Institute of Technology, School of Chemical Science and Engineering, Fibre and Polymer Technology, SE-100 44 Stockholm, Sweden;

    KTH Royal Institute of Technology, School of Chemical Science and Engineering, Fibre and Polymer Technology, SE-100 44 Stockholm, Sweden;

    KTH Royal Institute of Technology, School of Chemical Science and Engineering, Fibre and Polymer Technology, SE-100 44 Stockholm, Sweden;

    KTH Royal Institute of Technology, School of Chemical Science and Engineering, Fibre and Polymer Technology, SE-100 44 Stockholm, Sweden;

    KTH Royal Institute of Technology, School of Chemical Science and Engineering, Fibre and Polymer Technology, SE-100 44 Stockholm, Sweden;

    KTH Royal Institute of Technology, School of Chemical Science and Engineering, Fibre and Polymer Technology, SE-100 44 Stockholm, Sweden;

    KTH Royal Institute of Technology, School of Chemical Science and Engineering, Fibre and Polymer Technology, SE-100 44 Stockholm, Sweden;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Polyethylene; Metal oxide nanoparticles; Water; Acetophenone; Cumyl alcohol; Phenolic antioxidant; Adsorption;

    机译:聚乙烯金属氧化物纳米粒子;水;苯乙酮;异丙醇;酚类抗氧化剂;吸附性;

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