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Acyclic Halamine Polypropylene Polymer: Effect Of Monomer Structure On Grafting Efficiency, Stability And Biocidal Activities

机译:无环卤胺聚丙烯聚合物:单体结构对接枝效率,稳定性和杀菌活性的影响

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Radical graft polymerization of polypropylene (PP) with acrylic amide derivatives was studied in a melt extrusion process. Fourier transform spectroscopy (FTIR) results and nitrogen analysis confirmed that acrylamide (AAM), methacrylamide (MAM), N-terr-butyl-acrylamide (NTAAM) and N-terr-butylmethacrylamide (NTMAM) were successfully grafted onto PP, and the grafted products were employed as precursors of biocidal N-halamine polymers. Monomer structures affected grafting efficiency and polymer chain scission reactions on the polymer. Addition of styrene (St) as a co-monomer in the grafting process was studied. Addition of St significantly prevented polymer chain scission, though, could increase or decrease grafting content of vinyl-amide monomers. The reactivity ratios of the multi-monomer systems during melt-grafting process were evaluated through Fineman-Ross method. The halogenated products exhibited powerful antimicrobial properties against Escherichia coli and Staphylococcus aureus. In addition, the possible hydrolysis mechanism of acyclic N-halamine polymers during several recharging cycles were proposed based on experimental data.
机译:在熔融挤出过程中研究了聚丙烯(PP)与丙烯酸酰胺衍生物的自由基接枝聚合。傅里叶变换光谱(FTIR)结果和氮分析证实丙烯酰胺(AAM),甲基丙烯酰胺(MAM),N-叔丁基丙烯酰胺(NTAAM)和N-叔丁基甲基丙烯酰胺(NTMAM)已成功接枝到PP上并接枝了产品用作杀生物的N-卤胺聚合物的前体。单体结构影响接枝效率和聚合物上的聚合物断链反应。研究了接枝过程中苯乙烯(St)作为共聚单体的添加。但是,添加St可以显着阻止聚合物断链,但可以增加或减少乙烯基酰胺单体的接枝含量。通过Fineman-Ross方法评价了多单体体系在熔融接枝过程中的反应率。卤化产物对大肠杆菌和金黄色葡萄球菌具有强大的抗菌性能。此外,根据实验数据,提出了无环N-卤胺聚合物在几个充电循环中可能的水解机理。

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