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Fabrication of polypropylene fibers possessing quaternized ammonium salt based on the combination of CuAAC click chemistry and electrospinning

机译:基于Cuaac的组合和静电纺丝,具有季铵化铵盐的聚丙烯纤维的制备

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This study provides a straightforward method for preparing fibers of polypropylene possessing quaternary ammonium salt (FPP-QAS) by combining copper (I)-catalyzed azide-alkyne cycloaddition "click" reaction (CuAAC) and electrospinning technique. Initially, chlorinated polypropylene (PP-Cl) is modified to azidofunctional polypropylene (PP-N3) in the presence of azidotrimethylsilane (TMS-N3) and tetrabutylammonium fluoride (TBAF), whereas alkyne-terminated quaternary ammonium salt (QAS-Alkyne) is synthesized via esterification of 3-dimethylamino-1-propyne with benzyl bromide. Then, FPP-QAS is fabricated by CuAAC reaction between PP-N3 and QAS-Alkyne, and subsequent electrospinning carried out at different feeding rates (FR), applied voltages (AV) and tip-to-collector distances (TCD). After that, the achieved FPP-QAS is analyzed with regard to their wettability, morphological, thermal and antibacterial features by comparing with its not only cast film (CPP-QAS) but also cast film and fibers of chlorinated polypropylene precursor (CPP-Cl and FPP-Cl). The SEM images demonstrate that the formation of microfiber diameter is uniform, cylindrical and smooth without free beads. It is also observed from the results that QAS grafted onto polypropylene backbone not only increase the thermostability and glass transition temperature but also diminish the wettability. The antibacterial activity of the electrospun FPP-QAS sample is found to be higher than that of the electrospun FPP-Cl against both Gramnegative Escherichia coli (E. coli) and Gram-positive Staphylococcus aureus (S. aureus). Thus, FPP-QAS demonstrated in this work can present alternatives to researchers working on the industrial applications of polypropylene.
机译:该研究提供了一种直接的方法,用于制备具有季铵盐(FPP-QAS)的聚丙烯纤维通过组合铜(I) - 催化α甲酰胺-Alkyne环加成“点击”反应(Cuaac)和静电纺丝技术。最初,在亚氮二甲基硅烷(TMS-N3)和四丁基氟化铵(TBAF)存在下,将氯化聚丙烯(PP-CL)改性至氮杂官能聚丙烯(PP-N3),而炔灭绝的季铵盐(Qas-alkyne)是合成的通过用苄基溴酯酯化3-二甲基氨基-1-丙炔。然后,FPP-QA通过PP-N3和Qas-alkyne之间的CUAAC反应而制造,并且随后在不同馈送速率(FR),施加电压(AV)和尖端到集电极距离(TCD)进行的静电纺丝。之后,通过与其不仅与其不仅浇铸膜(CPP-QAS)相比,分析了所达到的FPP-QA,而是通过浇铸膜(CPP-CPP-CPP-CL)铸造薄膜和纤维(CPP-CL和FPP-CL)。 SEM图像表明,微纤维直径的形成是均匀的,圆柱形和光滑,无需自由珠。从Qas接枝到聚丙烯骨架上的结果中也观察到它不仅增加了热稳定性和玻璃化转变温度,而且还减少了润湿性。发现Electurpum FPP-QAS样品的抗菌活性高于Electur纺FPP-CL对克革仑的大肠杆菌(大肠杆菌)和革兰氏阳性金黄色葡萄球菌的抗菌活性。因此,在本工作中证明的FPP-QA可以为研究聚丙烯的工业应用的研究人员提供替代方案。

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