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首页> 外文期刊>Environmental Science & Technology >Influence of Nanomaterial Compatibilization Strategies on Polyamide Nanocomposites Properties and Nanomaterial Release during the Use Phase
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Influence of Nanomaterial Compatibilization Strategies on Polyamide Nanocomposites Properties and Nanomaterial Release during the Use Phase

机译:纳米材料相容化策略对聚酰胺纳米复合材料性能和使用阶段纳米材料释放的影响

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摘要

The incorporation of small amounts of nano- fillers in polymeric matrices has enabled new applications in several industrial sectors. The nanofiller dispersion can be improved by modifying the nanomaterial (NM) surface or predispersing the NMs to enhance compatibility. This study evaluates the effect of these compatibilization strategies on migration/release of the nanofiller and transformation of polyamide-6 (PA6), a thermoplastic polymer widely used in industry during simulated outdoors use. Two nanocomposites (NCs) containing SiO_2 nanoparticles (NPs) with different surface properties and two multiwalled carbon nanotube (MWCNT) NCs obtained by different addition methods were produced and characterized, before and after accelerated wet aging conditions. Octyl-modified SiO_2 NPs, though initially more aggregated than uncoated SiO_2 NPs, reduced PA6 hydrolysis and, consequently, NM release. Although no clear differences in dispersion were observed between the two types of MWCNT NCs (masterbatch vs direct addition) after manufacture, the use of the MWCNT masterbatch reduced PA6 degradation during aging, preventing MWCNT accumulation on the surface and further release or potential exposure by direct contact The amounts of NM released were lower for MWCNTs (36 and 108 mg/ m~2) than for SiO_2 NPs (167 and 730 mg/m~2), being lower in those samples where the NC was designed to improve the nanofiller-matrix interaction. Hence, this study shows that optimal compatibilization between NM and matrix can improve NC performance, reducing polymer degradation and exposure and/or release of the nanofiller.
机译:在聚合物基体中掺入少量的纳米填料已在多个工业领域实现了新的应用。可以通过修饰纳米材料(NM)表面或将NMs预分散以增强相容性来改善纳米填料的分散性。这项研究评估了这些增容策略对纳米填料的迁移/释放和聚酰胺6(PA6)的转化的影响,聚酰胺6(PA6)是在模拟户外使用中广泛用于工业的热塑性聚合物。在加速湿老化条件之前和之后,制备并表征了两种纳米复合材料(NCs),它们分别包含具有不同表面性质的SiO_2纳米颗粒(NPs)和两种通过不同添加方法获得的多壁碳纳米管(MWCNT)NCs。辛基改性的SiO_2 NP尽管最初比未涂覆的SiO_2 NP聚集更多,但减少了PA6的水解,从而降低了NM的释放。尽管制造后两种类型的MWCNT NCs(母料与直接添加)之间的分散性没有明显差异,但使用MWCNT母料可减少老化过程中的PA6降解,防止MWCNT积聚在表面上,并通过直接释放进一步释放或潜在暴露接触MWCNTs(36和108 mg / m〜2)的NM释放量低于SiO_2 NPs(167和730 mg / m〜2)的NM释放量,在那些设计用于改善纳米填料的NC的样品中较低。基质相互作用。因此,这项研究表明,NM和基质之间的最佳相容性可以改善NC性能,减少聚合物降解以及纳米填料的暴露和/或释放。

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  • 来源
    《Environmental Science & Technology》 |2016年第5期|2584-2594|共11页
  • 作者单位

    LEITAT Technological Center, C/de la Innovacio 2, 08225 Terrassa (Barcelona), Spain,Centre for NanoBioSafety and Sustainability (CNBSS), 08193 Bellaterra (Barcelona), Spain;

    LEITAT Technological Center, C/de la Innovacio 2, 08225 Terrassa (Barcelona), Spain,Centre for NanoBioSafety and Sustainability (CNBSS), 08193 Bellaterra (Barcelona), Spain;

    LEITAT Technological Center, C/de la Innovacio 2, 08225 Terrassa (Barcelona), Spain;

    LEITAT Technological Center, C/de la Innovacio 2, 08225 Terrassa (Barcelona), Spain;

    Centre for NanoBioSafety and Sustainability (CNBSS), 08193 Bellaterra (Barcelona), Spain,Catalan Institute of Nanoscience and Nanotechnology (ICN2), Campus de la UAB, Edifici CM3, 08193 Bellaterra (Barcelona), Spain,Vall d'Hebron Institut de Recerca (VHIR), Passeig de la Vall d'Hebron 119, 08035 Barcelona, Spain;

    Centre for NanoBioSafety and Sustainability (CNBSS), 08193 Bellaterra (Barcelona), Spain,Catalan Institute of Nanoscience and Nanotechnology (ICN2), Campus de la UAB, Edifici CM3, 08193 Bellaterra (Barcelona), Spain;

    LEITAT Technological Center, C/de la Innovacio 2, 08225 Terrassa (Barcelona), Spain,Centre for NanoBioSafety and Sustainability (CNBSS), 08193 Bellaterra (Barcelona), Spain;

    LEITAT Technological Center, C/de la Innovacio 2, 08225 Terrassa (Barcelona), Spain,Centre for NanoBioSafety and Sustainability (CNBSS), 08193 Bellaterra (Barcelona), Spain;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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