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Tunable radical scavenging activity of carbon nanotubes through sonication

机译:通过声处理可调节的碳纳米管自由基清除活性

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摘要

Carbon nanotubes (CNTs) having controlled radical scavenging activity have been achieved tuning the content of their lattice defects induced by an ultra-sound (us) treatment. The reactivity of CNTs, subjected to ultra-sonication for different time intervals, toward 1,1-diphenyl-2-pycryl (DPPH) and hydroxyl (•OH) radicals has been estimated and related to defect concentration, evaluated through Raman spectrometry. The radical scavenging efficiency of ultra-sound treated CNTs (us-CNTs) increases with increasing the content of the structural defects, suggesting that the defect resulting from us treatment can be capitalized to obtain an amplified and controlled radical scavenging activity. The us-CNTs have been incorporated in ultra high molecular weight polyethylene (UHMWPE) matrix by hot compaction with the aim to exploit their anti-oxidant activity against photo- and thermo-oxidative degradation. The us-CNTs containing nanocomposites show progressively improved photo- and thermo-oxidative resistance with increasing the us time, highlighting that the stability of the nanocomposites can be profitably modulated by controlling the amount of CNT structural defects.
机译:已经实现了具有受控的自由基清除活性的碳纳米管(CNT),以调节由超声波(us)处理引起的晶格缺陷的含量。通过拉曼光谱法评估了在不同时间间隔内进行超声波处理的CNTs对1,1-二苯基-2-吡啶基(DPPH)和羟基(•OH)自由基的反应性,并且与缺陷浓度有关。超声处理的碳纳米管(us-CNT)的自由基清除效率随着结构缺陷含量的增加而增加,这表明我们处理产生的缺陷可以被资本化,以获得放大和受控的自由基清除活性。 us-CNT通过热压制被掺入超高分子量聚乙烯(UHMWPE)基质中,目的是利用其抗光和热氧化降解的抗氧化活性。包含纳米复合材料的us-CNT显示出随着使用时间的增加而逐渐改善的光和热氧化耐受性,突出表明可以通过控制CNT结构缺陷的数量来有益地调节纳米复合材料的稳定性。

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