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An eco-friendly and durable multifunctional cotton fabric incorporating ZnO and a branched polymer

机译:一种环保耐用的多功能棉织物,包括ZnO和支化聚合物

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In this study, we investigated a two-step method of preparing cotton fabrics with flame retardancy and UV-blocking properties. This method involved the in situ deposition of ZnO nanoparticles (NPs) and the synthesis of a phosphorus ammonium salt. The application of ZnO NPs on cotton fabrics was achieved by an in situ ammonia-smoking method with zinc acetate and ammonia. A hyperbranched polyphosphate ammonium salt (FHPOPN) was synthesized for application to the cotton fabrics after the ammonia-smoked finish was applied. This research mainly focused on the fire-resistance and UV-blocking performance of cotton fabrics. The treated cotton fabrics were observed by scanning electron microscopy (SEM). The Fourier transform infrared (FTIR) spectroscopy results showed that ZnO NPs were successfully deposited in the fabric and that FHPOPN was bound to the fabric by covalent bonds. The flame retardancy and UV-protection properties of the treated cotton fabrics were studied. The effect of the zinc acetate concentration on the fire resistance and UV-blocking performance of the fabrics was investigated. The cotton fabrics treated with 70 g/L zinc acetate and 160 g/L FHPOPN obtained excellent flame retardancy with a char length of 57 mm and an limited oxygen index (LOI) value of 36.4%. The peak heat release rate and the total heat release of the ZnO/FHPOPN-treated samples were 26 kW/m(2) and 4.4 MJ/m(2), respectively, which were slightly lower than those of the FHPOPN-treated samples and much lower than those of the control cotton fabric sample. Furthermore, the thermogravimetric analyses of ZnO/FHPOPN-treated cotton fabric showed a char yield of 33.3% at 800 degrees C, whereas FHPOPN-treated cotton fabrics had a 29.7% char yield. The ZnO/FHPOPN-treated cotton fabric exhibited effective UV-protection properties with a UPF value of 224.80. These results demonstrated that the ZnO/FHPOPN-treated fabric had excellent flame retardancy, washability and UV-protection performance and revealed the importance of ZnO NPs in enhancing the flame retardancy and UV-blocking of performance cotton fabrics.
机译:在本研究中,我们研究了一种两步法制备具有阻燃和防紫外线性能的棉织物的方法。该方法包括原位沉积ZnO纳米颗粒(NPs)和合成磷铵盐。以醋酸锌和氨水为原料,采用原位氨熏法在棉织物上应用氧化锌纳米颗粒。合成了一种超支化聚磷酸铵盐(FHPOPN),并将其用于棉织物的氨熏整理。本文主要研究了棉织物的阻燃和防紫外线性能。用扫描电子显微镜(SEM)对处理后的棉织物进行了观察。傅立叶变换红外光谱(FTIR)结果表明,ZnO纳米颗粒成功沉积在织物中,FHPOPN通过共价键与织物结合。研究了处理后棉织物的阻燃性和防紫外线性能。研究了醋酸锌浓度对织物阻燃和防紫外线性能的影响。经70g/L醋酸锌和160g/L FHPOPN处理的棉织物具有优良的阻燃性能,炭长57mm,极限氧指数(LOI)为36.4%。ZnO/FHPOPN处理样品的峰值热释放率和总热释放率分别为26 kW/m(2)和4.4 MJ/m(2),略低于FHPOPN处理样品,远低于对照棉织物样品。此外,经ZnO/FHPOPN处理的棉织物的热重分析显示,在800℃时,半焦产率为33.3%,而经FHPOPN处理的棉织物的半焦产率为29.7%。经ZnO/FHPPN处理的棉织物具有有效的紫外线防护性能,UPF值为224.80。这些结果表明,经ZnO/FHPOPN处理的织物具有优异的阻燃性、耐洗性和防紫外线性能,并揭示了ZnO NP在提高棉织物阻燃性和防紫外线性能方面的重要性。

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