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Hydrogen bond complexasion to prepare guanidine phosphate flame retardant poly(vinyl alcohol) membrane with high transparency

机译:氢键络合制备高透明性磷酸胍阻燃聚乙烯醇膜

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摘要

It is a challenge to prepare a flame retardant polymer membrane with high transparency through addition of flame retardants all the time. In the present paper, a compounding method based on hydrogen bonding complexation is used to realize molecule-scale dispersion of a N-P flame retardant (guanidine phosphate (GP)) in poly(vinyl alcohol) (PVA) membrane by the interaction of their intermolecular hydrogen bonds. In this way, a PVA membrane with high transparence can be successfully obtained. Vertical combustion, micro-scale combustion calorimetric, thermo-gravimetric analysis, Fourier transform infrared spectroscopy and scanning electron microscope are employed to evaluate the flame retardancy and analyze the corresponding mechanisms. The GP flame retardant PVA membrane with high transparence improves the tensile strength by 47% and achieves UL94 VTM-0 rating when the content of GP is 15 wt%. It shows that the interaction between GP and PVA effectively promote formation of the continuous and stable char in the condensed phase.
机译:通过一直添加阻燃剂来制备具有高透明性的阻燃聚合物膜是一个挑战。本文采用基于氢键络合的复合方法,通过分子间氢原子的相互作用,实现了NP阻燃剂(磷酸胍)在聚乙烯醇(PVA)膜中的分子规模分散。债券。以此方式,可以成功地获得具有高透明度的PVA膜。采用立式燃烧,微尺度燃烧量热,热重分析,傅里叶变换红外光谱和扫描电子显微镜对阻燃性进行了评估,并分析了相应的机理。当GP含量为15 wt%时,具有高透明度的GP阻燃PVA膜可将拉伸强度提高47%,并达到UL94 VTM-0等级。它表明GP和PVA之间的相互作用有效地促进了凝结相中连续稳定炭的形成。

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