College of Textile and Clothing, Institute of Functional Textiles and Advanced Materials, State Key Laboratory of Bio-fibers and Eco-textiles, Qingdao University, Qingdao 266071, China.
College of Textile and Clothing, Institute of Functional Textiles and Advanced Materials, State Key Laboratory of Bio-fibers and Eco-textiles, Qingdao University, Qingdao 266071, China.
Int J Biol Macromol. 2024 Nov;279(Pt 4):135245. doi: 10.1016/j.ijbiomac.2024.135245. Epub 2024 Aug 31.
Phosphorus-based flame retardants are widely employed in the study of flame retardancy for cotton fabrics due to their halogen-free nature and high efficiency. The addition of nitrogen and other elements can further enhance flame retardant properties through synergistic effects. However, the synthesis of flame-retardant multifunctional additives based on phosphoramidic ammonium salts has been scarcely reported. In this study, a halogen-free and formaldehyde-free phosphoramidite ammonium salt was synthesized as a synergistic flame retardant multifunctional additive. This compound, with phosphorus as the primary flame retardant element and a nitrogen-containing guanidine group, was used to modify cotton fabrics. The treated fabrics exhibited enhanced flame retardant and antibacterial properties. Notably, cotton fabrics treated with a 17.9 % weight gain showed a damaged length of 4 cm in the vertical flame test, and the LOI value increased to 41.5 %, remaining at 27.3 % even after 50 washing cycles. The results of the cone calorimeter test (CCT) revealed that the peak heat release rate (PHRR) and total heat release (THR) of treated cotton were 30.35 kW/m and 5.46 MJ/m, respectively, representing reductions of 87.04 % and 36.07 % compared to untreated cotton. Physical performance tests indicated only a slight decrease in the strength and whiteness of the cotton fabrics, while softness increased after treatment. Moreover, the treated cotton fabric exhibited excellent antibacterial properties, with antibacterial rates of 99.26 % against E. coli and 98.54 % against S. aureus.
磷系阻燃剂由于其无卤、高效的特点,被广泛应用于棉织物的阻燃研究。氮等元素的添加可以通过协同作用进一步提高阻燃性能。然而,基于磷酰胺酸铵盐的阻燃多功能添加剂的合成却鲜有报道。本研究合成了一种无卤、无甲醛的磷酰胺酸铵盐作为协同阻燃多功能添加剂。该化合物以磷为主要阻燃元素,含氮胍基,用于改性棉织物。处理后的织物表现出增强的阻燃和抗菌性能。值得注意的是,经 17.9%增重处理的棉织物在垂直燃烧试验中损毁长度为 4cm,LOI 值增加到 41.5%,即使经过 50 次洗涤循环,仍保持在 27.3%。锥形量热计测试(CCT)的结果表明,处理棉的峰值热释放速率(PHRR)和总热释放(THR)分别为 30.35kW/m 和 5.46MJ/m,与未处理棉相比,分别降低了 87.04%和 36.07%。物理性能测试表明,棉织物的强度和白度仅略有下降,处理后柔软度增加。此外,处理后的棉织物表现出优异的抗菌性能,对大肠杆菌的抗菌率为 99.26%,对金黄色葡萄球菌的抗菌率为 98.54%。