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Conferring flame retardancy on cotton using novel halogen-free flame retardant bifunctional monomers: synthesis, characterizations and applications

机译:使用新型无卤阻燃双功能单体赋予棉阻燃性:合成,表征和应用

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摘要

Two novel halogen-free phosphorous-nitrogen flame retardant bifunctional monomers were synthesized and characterized using attenuated total reflectance/Fourier transform-infrared (ATR/FT-IR) and electrospray ionization mass spectrometry (~+ESI-MS). The monomers were applied separately and graft polymerized on cotton in the presence of the thermal initiator K2S2O8. The performance of each monomer was evaluated using thermal gravimetric analysis (TGA), grafting efficiency, and vertical flame test. It was shown that the performance of N,N-dimethyl di(acryloyloxyethyl)phosphoramide (DMDAEP) (monomer 2) as flame retardant outperformed that of ethyl di(acryloyloxyethyl)phosphorodiamidate (EDAEP) (monomer 1). The superior performance of DMDAEP was attributed to the presence of more nitrogen atoms compared to EDAEP. The increased nitrogen content in DMDAEP increased the synergistic effect of the P-N system. Cotton treated using padding methods showed more promising results than cotton treated by exhaust methods. Published by Elsevier Ltd.
机译:合成了两种新型的无卤磷氮阻燃双功能单体,并使用衰减全反射/傅立叶红外光谱(ATR / FT-IR)和电喷雾电离质谱(〜+ ESI-MS)进行了表征。单体分别施加并在热​​引发剂K2S2O8存在下接枝聚合在棉上。使用热重分析(TGA),接枝效率和垂直火焰测试评估了每种单体的性能。结果表明,N,N-二甲基二(丙烯酰氧基乙基)磷酰胺(DMDAEP)(阻燃剂2)的性能优于二(丙烯酰氧基乙基)磷酸二氨基乙酯(EDAEP)(单体1)。 DMDAEP的卓越性能归因于与EDAEP相比存在更多的氮原子。 DMDAEP中增加的氮含量增加了P-N系统的协同作用。用填充法处理的棉花比用排气法处理的棉花显示出更有希望的结果。由Elsevier Ltd.发布

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