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Novel strategic approach for the thermo- and photo-oxidative stabilization of polyolefin/clay nanocomposites

机译:聚烯烃/粘土纳米复合材料热和光氧化稳定化的新型战略方法

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摘要

Polyolefin/clay nanocomposites were prepared by melt mixing and their oxidative stability was studied under long-term thermo- and photo-oxidative test conditions in the absence and presence of a modified organo montmorillonite clay (OM-MMt) containing a chemically-bound hindered phenol antioxidant function, (AO)OM-Mt. It was found that nanocomposites based on both polyethylene (PE) and polyethylene-grafted-maleic anhydride (PEgMA) containing the (AO)OM-Mt gave a higher oxidative stability, along with better clay dispersion, compared to analogous PE or PEgMA-based nanocomposites containing an added (free) conventional antioxidant with a similar hindered phenol function (using the commercial hindered phenol Irganox® 1076). These findings can be explained in terms of the ability of the organo-modifier containing the in-built antioxidant function to act locally at the interface between the clay silicate layers and the polymer macromolecules thus contributing to the improved stability of the polymer observed both during long-term thermal- and photo-oxidative treatments.
机译:通过熔融混合制备聚烯烃/粘土纳米复合材料,并在不存在和存在含有化学键合受阻酚的改性有机蒙脱土(OM-MMt)的情况下,在长期的热氧化和光氧化测试条件下研究其氧化稳定性。抗氧化功能,(AO)OM-Mt。发现基于聚乙烯(PE)和含有(AO)OM-Mt的聚乙烯接枝马来酸酐(PEgMA)的纳米复合材料与类似的PE或PEgMA-based相比,具有更高的氧化稳定性以及更好的粘土分散性纳米复合材料,其中包含添加的(游离的)具有类似受阻酚功能的常规抗氧化剂(使用商业受阻酚Irganox®1076)。这些发现可以用含有内置抗氧化剂功能的有机改性剂在粘土硅酸盐层和聚合物大分子之间的界面上局部作用的能力来解释,从而有助于长期观察到的聚合物稳定性的提高。长期热和光氧化处理。

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